{"status":"ok","message-type":"work","message-version":"1.0.0","message":{"indexed":{"date-parts":[[2026,1,20]],"date-time":"2026-01-20T00:33:02Z","timestamp":1768869182871,"version":"3.49.0"},"reference-count":107,"publisher":"Springer Science and Business Media LLC","issue":"1","license":[{"start":{"date-parts":[[2019,2,8]],"date-time":"2019-02-08T00:00:00Z","timestamp":1549584000000},"content-version":"tdm","delay-in-days":0,"URL":"http:\/\/www.springer.com\/tdm"}],"funder":[{"name":"National Science Foundation","award":["OCI-0725070"],"award-info":[{"award-number":["OCI-0725070"]}]},{"name":"National Science Foundation","award":["ACI-1238993"],"award-info":[{"award-number":["ACI-1238993"]}]}],"content-domain":{"domain":["link.springer.com"],"crossmark-restriction":false},"short-container-title":["Comput Softw Big Sci"],"published-print":{"date-parts":[[2019,12]]},"DOI":"10.1007\/s41781-019-0022-7","type":"journal-article","created":{"date-parts":[[2019,2,8]],"date-time":"2019-02-08T03:06:13Z","timestamp":1549595173000},"update-policy":"https:\/\/doi.org\/10.1007\/springer_crossmark_policy","source":"Crossref","is-referenced-by-count":10,"title":["Supporting High-Performance and High-Throughput Computing for Experimental Science"],"prefix":"10.1007","volume":"3","author":[{"given":"E. A.","family":"Huerta","sequence":"first","affiliation":[],"role":[{"role":"author","vocabulary":"crossref"}]},{"given":"Roland","family":"Haas","sequence":"additional","affiliation":[],"role":[{"role":"author","vocabulary":"crossref"}]},{"given":"Shantenu","family":"Jha","sequence":"additional","affiliation":[],"role":[{"role":"author","vocabulary":"crossref"}]},{"given":"Mark","family":"Neubauer","sequence":"additional","affiliation":[],"role":[{"role":"author","vocabulary":"crossref"}]},{"given":"Daniel S.","family":"Katz","sequence":"additional","affiliation":[],"role":[{"role":"author","vocabulary":"crossref"}]}],"member":"297","published-online":{"date-parts":[[2019,2,8]]},"reference":[{"issue":"2\u20134","key":"22_CR1","doi-asserted-by":"publisher","first-page":"323","DOI":"10.1002\/cpe.938","volume":"17","author":"D Thain","year":"2005","unstructured":"Thain D, Tannenbaum T, Livny M (2005) Distributed computing in practice: the Condor experience. Concurr Pract Exp 17(2\u20134):323","journal-title":"Concurr Pract Exp"},{"key":"22_CR2","first-page":"012057","volume":"78","author":"Ruth Pordes","year":"2007","unstructured":"Pordes R, Petravick D, Kramer B, Olson D, Livny M, Roy A, Avery P, Blackburn K, Wenaus T, W\u00fcrthwein F et al (2007) The open science grid. J Phys Conf Ser 78:012057 (IOP Publishing)","journal-title":"Journal of Physics: Conference Series"},{"issue":"13","key":"22_CR3","doi-asserted-by":"publisher","first-page":"131103","DOI":"10.1103\/PhysRevLett.116.131103","volume":"116","author":"BP Abbott","year":"2016","unstructured":"Abbott BP, Abbott R, Abbott TD, Abernathy MR, Acernese F, Ackley K, Adams C, Adams T, Addesso P, Adhikari RX et al (2016) GW150914: the advanced LIGO detectors in the era of first discoveries. Phys Rev Lett 116(13):131103. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.116.131103","journal-title":"Phys Rev Lett"},{"issue":"7","key":"22_CR4","doi-asserted-by":"publisher","first-page":"074001","DOI":"10.1088\/0264-9381\/32\/7\/074001","volume":"32","author":"J Aasi","year":"2015","unstructured":"Aasi J et al (2015) Advanced LIGO class. Quantum Gravity 32(7):074001. \nhttps:\/\/doi.org\/10.1088\/0264-9381\/32\/7\/074001","journal-title":"Quantum Gravity"},{"key":"22_CR5","doi-asserted-by":"publisher","first-page":"844","DOI":"10.1002\/andp.19163540702","volume":"1915","author":"A Einstein","year":"1915","unstructured":"Einstein A (1915) Die Feldgleichungen der Gravitation K\u00f6niglich preussische akademie der wissenschaften Zu Berlin. Sitzungberichte 1915:844. \nhttps:\/\/doi.org\/10.1002\/andp.19163540702","journal-title":"Sitzungberichte"},{"key":"22_CR6","doi-asserted-by":"publisher","first-page":"688","DOI":"10.1002\/andp.19163540702","volume":"1916","author":"A Einstein","year":"1916","unstructured":"Einstein A (1916) N\u00e4herungsweise Integration der Feldgleichungen der Gravitation K\u00f6niglich preussische akademie der wissenschaften Zu Berlin. Sitzungberichte 1916:688. \nhttps:\/\/doi.org\/10.1002\/andp.19163540702","journal-title":"Sitzungberichte"},{"key":"22_CR7","doi-asserted-by":"publisher","first-page":"154","DOI":"10.1002\/andp.19163540702","volume":"1918","author":"A Einstein","year":"1918","unstructured":"Einstein A (1918) \u00dcber Gravitationswellen K\u00f6niglich preussische akademie der wissenschaften Zu Berlin. Sitzungberichte 1918:154. \nhttps:\/\/doi.org\/10.1002\/andp.19163540702","journal-title":"Sitzungberichte"},{"issue":"2","key":"22_CR8","doi-asserted-by":"publisher","first-page":"024001","DOI":"10.1088\/0264-9381\/32\/2\/024001","volume":"32","author":"F Acernese","year":"2015","unstructured":"Acernese F et al (2015) Advanced Virgo: a second-generation interferometric gravitational wave detector. Class Quantum Gravity 32(2):024001. \nhttps:\/\/doi.org\/10.1088\/0264-9381\/32\/2\/024001\n\n  (for the Virgo Collaboration)","journal-title":"Class Quantum Gravity"},{"issue":"6","key":"22_CR9","doi-asserted-by":"publisher","first-page":"061102","DOI":"10.1103\/PhysRevLett.116.061102","volume":"116","author":"BP Abbott","year":"2016","unstructured":"Abbott BP, Abbott R, Abbott TD, Abernathy MR, Acernese F, Ackley K, Adams C, Adams T, Addesso P, Adhikari RX et al (2016) Observation of gravitational waves from a binary black hole merger. Phys Rev Lett 116(6):061102. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.116.061102","journal-title":"Phys Rev Lett"},{"issue":"24","key":"22_CR10","doi-asserted-by":"publisher","first-page":"241103","DOI":"10.1103\/PhysRevLett.116.241103","volume":"116","author":"BP Abbott","year":"2016","unstructured":"Abbott BP, Abbott R, Abbott TD, Abernathy MR, Acernese F, Ackley K, Adams C, Adams T, Addesso P, Adhikari RX et al (2016) GW151226: observation of gravitational waves from a 22-solar-mass binary black hole coalescence. Phys Rev Lett 116(24):241103. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.116.241103","journal-title":"Phys Rev Lett"},{"key":"22_CR11","doi-asserted-by":"publisher","unstructured":"Abbott BP, Abbott R, Abbott TD, Abernathy MR, Acernese F, Ackley K, Adams C, Adams T, Addesso P, Adhikari RX et al (2017) GW170104: observation of a 50-solar-mass binary black hole coalescence at redshift 0.2. Phys Rev Lett 118:221101. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.118.221101","DOI":"10.1103\/PhysRevLett.118.221101"},{"issue":"14","key":"22_CR12","doi-asserted-by":"publisher","first-page":"141101","DOI":"10.1103\/PhysRevLett.119.141101","volume":"119","author":"BP Abbott","year":"2017","unstructured":"Abbott BP, Abbott R, Abbott TD, Acernese F, Ackley K, Adams C, Adams T, Addesso P, Adhikari RX, Adya VB et al (2017) GW170814: a three-detector observation of gravitational waves from a binary black hole coalescence. Phys Rev Lett 119(14):141101. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.119.141101","journal-title":"Phys Rev Lett"},{"key":"22_CR13","unstructured":"Abbott BP, Abbott R, Abbott TD, Acernese F, Ackley K, Adams C, Adams T, Addesso P, The LIGO Scientific Collaboration, the Virgo Collaboration et al (2017) GW170608: observation of a 19-solar-mass binary black hole coalescence. \narXiv:1711.05578\n\n [astro-ph.HE]"},{"key":"22_CR14","unstructured":"The LIGO Scientific Collaboration, the Virgo Collaboration, et al (2018) GWTC-1: a gravitational-wave transient catalog of compact binary mergers observed by LIGO and Virgo during the first and second observing runs. \narXiv:1811.12907"},{"issue":"16","key":"22_CR15","doi-asserted-by":"publisher","first-page":"161101","DOI":"10.1103\/PhysRevLett.119.161101","volume":"119","author":"BP Abbott","year":"2017","unstructured":"Abbott BP, Abbott R, Abbott TD, Acernese F, Ackley K, Adams C, Adams T, Addesso P, Adhikari RX, Adya VB et al (2017) GW170817: observation of gravitational waves from a binary neutron star inspiral. Phys Rev Lett 119(16):161101. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.119.161101","journal-title":"Phys Rev Lett"},{"key":"22_CR16","doi-asserted-by":"publisher","first-page":"L12","DOI":"10.3847\/2041-8213\/aa91c9","volume":"848","author":"BP Abbott","year":"2017","unstructured":"Abbott BP, Abbott R, Abbott TD, Acernese F, Ackley K, Adams C, Adams T, Addesso P, Adhikari RX, Adya VB et al (2017) Multi-messenger observations of a binary neutron star merger. Astrophys J Lett 848:L12. \nhttps:\/\/doi.org\/10.3847\/2041-8213\/aa91c9","journal-title":"Astrophys J Lett"},{"key":"22_CR17","doi-asserted-by":"publisher","first-page":"L39","DOI":"10.3847\/2041-8213\/aa9478","volume":"850","author":"BP Abbott","year":"2017","unstructured":"Abbott BP, Abbott R, Abbott TD, Acernese F, Ackley K, Adams C, Adams T, Addesso P, Adhikari RX, Adya VB et al (2017) Estimating the contribution of dynamical ejecta in the kilonova associated with GW170817. Astrophys J Lett 850:L39. \nhttps:\/\/doi.org\/10.3847\/2041-8213\/aa9478","journal-title":"Astrophys J Lett"},{"key":"22_CR18","doi-asserted-by":"publisher","first-page":"15","DOI":"10.1098\/rspa.1979.0109","volume":"368","author":"L Smarr","year":"1979","unstructured":"Smarr L (1979) Geometry of a black hole collision. R Soc Lond Proc Ser A 368:15. \nhttps:\/\/doi.org\/10.1098\/rspa.1979.0109","journal-title":"R Soc Lond Proc Ser A"},{"key":"22_CR19","first-page":"1","volume-title":"Supercomputing and numerical relativity: a look at the past, present and future supercomputing and numerical relativity: a look at the past, present and future","author":"DW Hobill","year":"1989","unstructured":"Hobill DW, Smarr LL (1989) Supercomputing and numerical relativity: a look at the past, present and future supercomputing and numerical relativity: a look at the past, present and future. Cambridge Univerty Press, Cambridge, pp 1\u201317"},{"key":"22_CR20","doi-asserted-by":"publisher","first-page":"2851","DOI":"10.1103\/PhysRevLett.71.2851","volume":"71","author":"P Anninos","year":"1993","unstructured":"Anninos P, Hobill D, Seidel E, Smarr L, Suen WM (1993) Collision of two black holes. Phys Rev Lett 71:2851. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.71.2851","journal-title":"Phys Rev Lett"},{"key":"22_CR21","doi-asserted-by":"publisher","first-page":"941","DOI":"10.1126\/scien.270.5238.941","volume":"270","author":"RA Matzner","year":"1995","unstructured":"Matzner RA, Seidel HE, Shapiro SL, Smarr L, Suen WM, Teukolsky SA, Winicour J (1995) Geometry of a black hole collision. Science 270:941. \nhttps:\/\/doi.org\/10.1126\/scien.270.5238.941","journal-title":"Science"},{"issue":"12","key":"22_CR22","doi-asserted-by":"publisher","first-page":"121101","DOI":"10.1103\/PhysRevLett.95.121101","volume":"95","author":"F Pretorius","year":"2005","unstructured":"Pretorius F (2005) Evolution of binary black-hole spacetimes. Phys Rev Lett 95(12):121101. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.95.121101","journal-title":"Phys Rev Lett"},{"issue":"11","key":"22_CR23","doi-asserted-by":"publisher","first-page":"111102","DOI":"10.1103\/PhysRevLett.96.111102","volume":"96","author":"JG Baker","year":"2006","unstructured":"Baker JG, Centrella J, Choi DI, Koppitz M, van Meter J (2006) Gravitational-wave extraction from an inspiraling configuration of merging black holes. Phys Rev Lett 96(11):111102. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.96.111102","journal-title":"Phys Rev Lett"},{"issue":"11","key":"22_CR24","doi-asserted-by":"publisher","first-page":"111101","DOI":"10.1103\/PhysRevLett.96.111101","volume":"96","author":"M Campanelli","year":"2006","unstructured":"Campanelli M, Lousto CO, Marronetti P, Zlochower Y (2006) Accurate evolutions of orbiting black-hole binaries without excision. Phys Rev Lett 96(11):111101. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.96.111101","journal-title":"Phys Rev Lett"},{"key":"22_CR25","doi-asserted-by":"publisher","first-page":"1","DOI":"10.1143\/PTPS.90.1","volume":"90","author":"T Nakamura","year":"1987","unstructured":"Nakamura T, Oohara K, Kojima Y (1987) General relativistic collapse to black holes and gravitational waves from black holes. Prog Theor Phys Suppl 90:1. \nhttps:\/\/doi.org\/10.1143\/PTPS.90.1","journal-title":"Prog Theor Phys Suppl"},{"key":"22_CR26","doi-asserted-by":"publisher","first-page":"5428","DOI":"10.1103\/PhysRevD.52.5428","volume":"52","author":"M Shibata","year":"1995","unstructured":"Shibata M, Nakamura T (1995) Evolution of three-dimensional gravitational waves: harmonic slicing case. Phys Rev D 52:5428. \nhttps:\/\/doi.org\/10.1103\/PhysRevD.52.5428","journal-title":"Phys Rev D"},{"issue":"2","key":"22_CR27","doi-asserted-by":"publisher","first-page":"024007","DOI":"10.1103\/PhysRevD.59.024007","volume":"59","author":"TW Baumgarte","year":"1998","unstructured":"Baumgarte TW, Shapiro SL (1998) Numerical integration of Einstein\u2019s field equations. Phys Rev D 59(2):024007. \nhttps:\/\/doi.org\/10.1103\/PhysRevD.59.024007","journal-title":"Phys Rev D"},{"issue":"4","key":"22_CR28","doi-asserted-by":"publisher","first-page":"044045","DOI":"10.1103\/PhysRevD.83.044045","volume":"83","author":"D Pollney","year":"2011","unstructured":"Pollney D, Reisswig C, Schnetter E, Dorband N, Diener P (2011) High accuracy binary black hole simulations with an extended wave zone. Phys Rev D 83(4):044045. \nhttps:\/\/doi.org\/10.1103\/PhysRevD.83.044045","journal-title":"Phys Rev D"},{"key":"22_CR29","doi-asserted-by":"publisher","unstructured":"Wardell B, Hinder I, Bentivegna E (2016) Simulation of GW150914 binary black hole merger using the Einstein toolkit. \nhttps:\/\/doi.org\/10.5281\/zenodo.155394","DOI":"10.5281\/zenodo.155394"},{"issue":"11","key":"22_CR30","doi-asserted-by":"publisher","first-page":"115001","DOI":"10.1088\/0264-9381\/29\/11\/115001","volume":"29","author":"F L\u00f6ffler","year":"2012","unstructured":"L\u00f6ffler F, Faber J, Bentivegna E, Bode T, Diener P, Haas R, Hinder I, Mundim BC, Ott CD, Schnetter E, Allen G, Campanelli M, Laguna P (2012) The Einstein Toolkit: a community computational infrastructure for relativistic astrophysics. Class Quantum Gravity 29(11):115001. \nhttps:\/\/doi.org\/10.1088\/0264-9381\/29\/11\/115001","journal-title":"Class Quantum Gravity"},{"key":"22_CR31","doi-asserted-by":"publisher","first-page":"064011","DOI":"10.1103\/PhysRevD.70.064011","volume":"70","author":"M Ansorg","year":"2004","unstructured":"Ansorg M, Br\u00fcgmann B, Tichy W (2004) A single-domain spectral method for black hole puncture data. Phys Rev D 70:064011. \nhttps:\/\/doi.org\/10.1103\/PhysRevD.70.064011","journal-title":"Phys Rev D"},{"key":"22_CR32","doi-asserted-by":"publisher","first-page":"109","DOI":"10.1007\/s10915-006-9123-7","volume":"32","author":"P Diener","year":"2007","unstructured":"Diener P, Dorband EN, Schnetter E, Tiglio M (2007) New, efficient, and accurate high order derivative and dissipation operators satisfying summation by parts, and applications in three-dimensional multi-block evolutions. J Sci Comput 32:109. \nhttps:\/\/doi.org\/10.1007\/s10915-006-9123-7","journal-title":"J Sci Comput"},{"key":"22_CR33","doi-asserted-by":"publisher","first-page":"1465","DOI":"10.1088\/0264-9381\/21\/6\/014","volume":"21","author":"E Schnetter","year":"2004","unstructured":"Schnetter E, Hawley SH, Hawke I (2004) Evolutions in 3-D numerical relativity using fixed mesh refinement. Class Quantum Gravity 21:1465. \nhttps:\/\/doi.org\/10.1088\/0264-9381\/21\/6\/014","journal-title":"Class Quantum Gravity"},{"key":"22_CR34","doi-asserted-by":"publisher","first-page":"743","DOI":"10.1088\/0264-9381\/21\/2\/026","volume":"21","author":"J Thornburg","year":"2004","unstructured":"Thornburg J (2004) A fast apparent-horizon finder for 3-dimensional cartesian grids in numerical relativity. Class Quantum Gravity 21:743. \nhttps:\/\/doi.org\/10.1088\/0264-9381\/21\/2\/026","journal-title":"Class Quantum Gravity"},{"key":"22_CR35","unstructured":"Blue Waters (2018). Blue Waters, Sustained petascale computing. \nhttps:\/\/bluewaters.ncsa.illinois.edu\/blue-waters"},{"key":"22_CR36","volume-title":"High performance parallel I\/O","author":"W Kramer","year":"2015","unstructured":"Kramer W, Butler M, Bauer G, Chadalavada K, Mendes C (2015) Blue waters parallel I\/O storage sub-system. In: Prabhat, Q Koziol (ed) High performance parallel I\/O. CRC Publications, Taylor and Francis Group, Routledge, Boca\nRaton, FL"},{"key":"22_CR37","unstructured":"Jones MD, White JP, Innus M, DeLeon RL, Simakov N, Palmer JT, Gallo SM, Furlani TR, Showerman M, Brunner R, Kot A, Bauer G, Bode B, Enos J, Kramer W (2017) Workload analysis of blue waters. \narXiv:1703.00924v1"},{"issue":"17","key":"22_CR38","doi-asserted-by":"publisher","first-page":"175009","DOI":"10.1088\/0264-9381\/32\/17\/175009","volume":"32","author":"Zachariah B Etienne","year":"2015","unstructured":"Etienne ZB, Paschalidis V, Haas R, M\u00f6sta P, Shapiro SL (2015) IllinoisGRMHD: an open-source, user-friendly GRMHD code for dynamical spacetimes. Class Quantum Gravity 32(17):175009. \nhttps:\/\/doi.org\/10.1088\/0264-9381\/32\/17\/175009","journal-title":"Classical and Quantum Gravity"},{"issue":"12","key":"22_CR39","doi-asserted-by":"publisher","first-page":"124062","DOI":"10.1103\/PhysRevD.93.124062","volume":"93","author":"R Haas","year":"2016","unstructured":"Haas R, Ott CD, Szilagyi B, Kaplan JD, Lippuner J, Scheel MA, Barkett K, Muhlberger CD, Dietrich T, Duez MD, Foucart F, Pfeiffer HP, Kidder LE, Teukolsky SA (2016) Simulations of inspiraling and merging double neutron stars using the spectral Einstein code. Phys Rev D 93(12):124062. \nhttps:\/\/doi.org\/10.1103\/PhysRevD.93.124062","journal-title":"Phys Rev D"},{"issue":"1","key":"22_CR40","doi-asserted-by":"publisher","first-page":"015005","DOI":"10.1088\/0264-9381\/31\/1\/015005","volume":"31","author":"P M\u00f6sta","year":"2014","unstructured":"M\u00f6sta P, Mundim BC, Faber JA, Haas R, Noble SC, Bode T, L\u00f6ffler F, Ott CD, Reisswig C, Schnetter E (2014) GRHydro: a new open-source general-relativistic magnetohydrodynamics code for the Einstein toolkit. Class Quantum Gravity 31(1):015005. \nhttps:\/\/doi.org\/10.1088\/0264-9381\/31\/1\/015005","journal-title":"Class Quantum Gravity"},{"key":"22_CR41","doi-asserted-by":"publisher","first-page":"84","DOI":"10.1016\/j.jcp.2016.12.059","volume":"335","author":"LE Kidder","year":"2017","unstructured":"Kidder LE, Field SE, Foucart F, Schnetter E, Teukolsky SA, Bohn A, Deppe N, Diener P, H\u00e9bert F, Lippuner J, Miller J, Ott CD, Scheel MA, Vincent T (2017) SpECTRE: a task-based discontinuous Galerkin code for relativistic astrophysics. J Comput Phys 335:84. \nhttps:\/\/doi.org\/10.1016\/j.jcp.2016.12.059","journal-title":"J Comput Phys"},{"issue":"24","key":"22_CR42","doi-asserted-by":"publisher","first-page":"241104","DOI":"10.1103\/PhysRevLett.111.241104","volume":"111","author":"AH Mrou\u00e9","year":"2013","unstructured":"Mrou\u00e9 AH, Scheel MA, Szil\u00e1gyi B, Pfeiffer HP, Boyle M, Hemberger DA, Kidder LE, Lovelace G, Ossokine S, Taylor NW, Zengino\u011flu A, Buchman LT, Chu T, Foley E, Giesler M, Owen R, Teukolsky SA (2013) Catalog of 174 binary black hole simulations for gravitational wave astronomy. Phys Rev Lett 111(24):241104. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.111.241104","journal-title":"Phys Rev Lett"},{"issue":"4","key":"22_CR43","doi-asserted-by":"publisher","first-page":"044028","DOI":"10.1103\/PhysRevD.95.044028","volume":"95","author":"A Boh\u00e9","year":"2017","unstructured":"Boh\u00e9 A, Shao L, Taracchini A, Buonanno A, Babak S, Harry IW, Hinder I, Ossokine S, P\u00fcrrer M, Raymond V, Chu T, Fong H, Kumar P, Pfeiffer HP, Boyle M, Hemberger DA, Kidder LE, Lovelace G, Scheel MA, Szil\u00e1gyi B (2017) Improved effective-one-body model of spinning, nonprecessing binary black holes for the era of gravitational-wave astrophysics with advanced detectors. Phys Rev D 95(4):044028. \nhttps:\/\/doi.org\/10.1103\/PhysRevD.95.044028","journal-title":"Phys Rev D"},{"key":"22_CR44","doi-asserted-by":"publisher","unstructured":"Husa S, Khan S, Hannam M, P\u00fcrrer M, Ohme F, Forteza XJ, Boh\u00e9 A (2016) Frequency-domain gravitational waves from nonprecessing black-hole binaries. I. New numerical waveforms and anatomy of the signal. Phys Rev D 93(4):044006. \nhttps:\/\/doi.org\/10.1103\/PhysRevD.93.044006","DOI":"10.1103\/PhysRevD.93.044006"},{"key":"22_CR45","doi-asserted-by":"publisher","unstructured":"Khan S, Husa S, Hannam M, Ohme F, P\u00fcrrer M, Forteza XJ, Boh\u00e9 A (2016) Frequency-domain gravitational waves from nonprecessing black-hole binaries. II. A phenomenological model for the advanced detector era. Phys Rev D 93(4):044007. \nhttps:\/\/doi.org\/10.1103\/PhysRevD.93.044007","DOI":"10.1103\/PhysRevD.93.044007"},{"issue":"6","key":"22_CR46","doi-asserted-by":"publisher","first-page":"061502","DOI":"10.1103\/PhysRevD.89.061502","volume":"89","author":"A Taracchini","year":"2014","unstructured":"Taracchini A, Buonanno A, Pan Y, Hinderer T, Boyle M, Hemberger DA, Kidder LE, Lovelace G, Mrou\u00e9 AH, Pfeiffer HP, Scheel MA, Szil\u00e1gyi B, Taylor NW, Zenginoglu A (2014) Effective-one-body model for black-hole binaries with generic mass ratios and spins. Phys Rev D 89(6):061502. \nhttps:\/\/doi.org\/10.1103\/PhysRevD.89.061502","journal-title":"Phys Rev D"},{"key":"22_CR47","doi-asserted-by":"publisher","unstructured":"Veitch J, Raymond V, Farr B, Farr W, Graff P, Vitale S, Aylott B, Blackburn K, Christensen N, Coughlin M, Del Pozzo W, Feroz F, Gair J, Haster CJ, Kalogera V, Littenberg T, Mandel I, Pitkin O\u2019Shaughnessy R, M, Rodriguez C, R\u00f6ver C., Sidery T, Smith R, Van Der Sluys M, Vecchio A, Vousden W, Wade L, (2015) Parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library. Phys Rev D 91(4):042003. \nhttps:\/\/doi.org\/10.1103\/PhysRevD.91.042003","DOI":"10.1103\/PhysRevD.91.042003"},{"issue":"21","key":"22_CR48","doi-asserted-by":"publisher","first-page":"215004","DOI":"10.1088\/0264-9381\/33\/21\/215004","volume":"33","author":"SA Usman","year":"2016","unstructured":"Usman SA, Nitz AH, Harry IW, Biwer CM, Brown DA, Cabero M, Capano CD, Dal Canton T, Dent T, Fairhurst S, Kehl MS, Keppel D, Krishnan B, Lenon A, Lundgren A, Nielsen AB, Pekowsky LP, Pfeiffer HP, Saulson PR, West M, Willis JL (2016) The PyCBC search for gravitational waves from compact binary coalescence. Class Quantum Gravity 33(21):215004. \nhttps:\/\/doi.org\/10.1088\/0264-9381\/33\/21\/215004","journal-title":"Class Quantum Gravity"},{"key":"22_CR49","doi-asserted-by":"publisher","first-page":"136","DOI":"10.1088\/0004-637X\/748\/2\/136","volume":"748","author":"K Cannon","year":"2012","unstructured":"Cannon K, Cariou R, Chapman A, Crispin-Ortuzar M, Fotopoulos N, Frei M, Hanna C, Kara E, Keppel D, Liao L, Privitera S, Searle A, Singer L, Weinstein A (2012) Toward early-warning detection of gravitational waves from compact binary coalescence. Astrophys J 748:136. \nhttps:\/\/doi.org\/10.1088\/0004-637X\/748\/2\/136","journal-title":"Astrophys J"},{"key":"22_CR50","doi-asserted-by":"publisher","first-page":"321","DOI":"10.1103\/PhysRevLett.13.321","volume":"13","author":"F Englert","year":"1964","unstructured":"Englert F, Brout R (1964) Broken symmetry and the mass of gauge vector mesons. Phys Rev Lett 13:321. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.13.321","journal-title":"Phys Rev Lett"},{"issue":"2","key":"22_CR51","doi-asserted-by":"publisher","first-page":"132","DOI":"10.1016\/0031-9163(64)91136-9","volume":"12","author":"P Higgs","year":"1964","unstructured":"Higgs P (1964) Broken symmetries, massless particles and gauge fields. Phys Lett 12(2):132. \nhttps:\/\/doi.org\/10.1016\/0031-9163(64)91136-9","journal-title":"Phys Lett"},{"key":"22_CR52","doi-asserted-by":"publisher","first-page":"508","DOI":"10.1103\/PhysRevLett.13.508","volume":"13","author":"PW Higgs","year":"1964","unstructured":"Higgs PW (1964) Broken symmetries and the masses of gauge bosons. Phys Rev Lett 13:508. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.13.508","journal-title":"Phys Rev Lett"},{"key":"22_CR53","doi-asserted-by":"publisher","first-page":"585","DOI":"10.1103\/PhysRevLett.13.585","volume":"13","author":"GS Guralnik","year":"1964","unstructured":"Guralnik GS, Hagen CR, Kibble TWB (1964) Global conservation laws and massless particles. Phys Rev Lett 13:585. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.13.585","journal-title":"Phys Rev Lett"},{"key":"22_CR54","doi-asserted-by":"publisher","first-page":"1156","DOI":"10.1103\/PhysRev.145.1156","volume":"145","author":"PW Higgs","year":"1966","unstructured":"Higgs PW (1966) Spontaneous symmetry breakdown without massless bosons. Phys Rev 145:1156. \nhttps:\/\/doi.org\/10.1103\/PhysRev.145.1156","journal-title":"Phys Rev"},{"key":"22_CR55","doi-asserted-by":"publisher","first-page":"1554","DOI":"10.1103\/PhysRev.155.1554","volume":"155","author":"TWB Kibble","year":"1967","unstructured":"Kibble TWB (1967) Symmetry breaking in non-abelian gauge theories. Phys Rev 155:1554. \nhttps:\/\/doi.org\/10.1103\/PhysRev.155.1554","journal-title":"Phys Rev"},{"key":"22_CR56","unstructured":"Einstein A (1952) Does the inertia of a body depend upon its energy-content? The principle of relativity. Dover Books on Physics, pp 67\u201371"},{"key":"22_CR57","unstructured":"LHC Higgs Cross Section Working Group, S. Dittmaier et al (2011) Handbook of LHC Higgs cross sections: 1. Inclusive observables. \narXiv:1101.0593\n\n [hep-ph]"},{"key":"22_CR58","unstructured":"LHC Higgs Cross Section Working Group, Dittmaier S et al (2012) Handbook of LHC Higgs cross sections: 2. Differential distributions. \narXiv:1201.3084\n\n [hep-ph]"},{"key":"22_CR59","unstructured":"The LHC Higgs Cross Section Working Group, Heinemeyer S et al (2013) Handbook of LHC Higgs cross sections: 3. Higgs properties. \narXiv: 1307.1347\n\n [hep-ph]"},{"key":"22_CR60","doi-asserted-by":"crossref","unstructured":"de Florian D, Grojean C, Maltoni F, Mariotti C, Nikitenko A, Pieri M, Savard P, Schumacher M, Tanaka R, Aggleton R et al (2016) Handbook of LHC Higgs cross sections: 4. Deciphering the nature of the Higgs sector. \narXiv: 1610.07922\n\n [hep-ph]","DOI":"10.2172\/1345634"},{"key":"22_CR61","doi-asserted-by":"publisher","first-page":"1","DOI":"10.1016\/j.physletb.2012.08.020","volume":"716","author":"G Aad","year":"2012","unstructured":"Aad G et al (2012) Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC ATLAS Collaboration. Phys Lett B 716:1. \nhttps:\/\/doi.org\/10.1016\/j.physletb.2012.08.020","journal-title":"Phys Lett B"},{"key":"22_CR62","doi-asserted-by":"publisher","first-page":"30","DOI":"10.1016\/j.physletb.2012.08.021","volume":"716","author":"S Chatrchyan","year":"2012","unstructured":"Chatrchyan S et al (2012) Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC CMS Collaboration. Phys Lett B 716:30. \nhttps:\/\/doi.org\/10.1016\/j.physletb.2012.08.021","journal-title":"Phys Lett B"},{"key":"22_CR63","doi-asserted-by":"publisher","first-page":"071301","DOI":"10.1103\/PhysRevLett.87.071301","volume":"87","author":"QR Ahmad","year":"2001","unstructured":"Ahmad QR et al (2001) Measurement of the rate of \n$$\\nu _e+d \\rightarrow p+p+e^-$$\n\n\n\n\n\u03bd\ne\n\n+\nd\n\u2192\np\n+\np\n+\n\ne\n-\n\n\n\n\n interactions produced by \n$$^8B$$\n\n\n\n\n\n8\n\nB\n\n\n\n solar neutrinos at the Sudbury Neutrino Observatory. Phys Rev Lett 87:071301. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.87.071301","journal-title":"Phys Rev Lett"},{"key":"22_CR64","doi-asserted-by":"publisher","first-page":"1562","DOI":"10.1103\/PhysRevLett.81.1562","volume":"81","author":"Y Fukuda","year":"1998","unstructured":"Fukuda Y et al (1998) Evidence for oscillation of atmospheric neutrinos. Phys Rev Lett 81:1562. \nhttps:\/\/doi.org\/10.1103\/PhysRevLett.81.1562","journal-title":"Phys Rev Lett"},{"issue":"08","key":"22_CR65","doi-asserted-by":"publisher","first-page":"S08003","DOI":"10.1088\/1748-0221\/3\/08\/S08003","volume":"3","author":"The ATLAS Collaboration","year":"2008","unstructured":"Collaboration ATLAS (2008) The ATLAS experiment at the CERN Large Hadron Collider. JINST 3:S08003. \nhttps:\/\/doi.org\/10.1088\/1748-0221\/3\/08\/S08003","journal-title":"Journal of Instrumentation"},{"key":"22_CR66","unstructured":"Jenos J (2016) Understanding blue waters topology and the topology aware scheduler. In: 2016 blue waters symposium. \nhttps:\/\/bluewaters.ncsa.illinois.edu\/liferay-content\/document-library\/201620Symposium\/enos_topology.pdf"},{"key":"22_CR67","doi-asserted-by":"crossref","unstructured":"Weitzel D, Bockelman B, Brown DA, Couvares P, W\u00fcrthwein F, Fajardo Hernandez E (2017) Data access for LIGO on the OSG. \narXiv:1705.06202","DOI":"10.1145\/3093338.3093363"},{"key":"22_CR68","doi-asserted-by":"publisher","unstructured":"Huerta EA, Haas R, Fajardo E, Katz DS, Anderson S, Couvares P, Willis J, Bouvet T, Enos J, Kramer WTC, Leong HW, Wheeler D (2017) BOSS-LDG: a novel computational framework that brings together blue waters, Open Science Grid, shifter and the LIGO data grid to accelerate gravitational wave discovery. In: IEEE 13th international conference on e-science (e-Science). \nhttps:\/\/doi.org\/10.1109\/eScience.2017.47","DOI":"10.1109\/eScience.2017.47"},{"key":"22_CR69","doi-asserted-by":"crossref","unstructured":"Belkin M, Haas R, Arnold GW, Leong HW, Huerta EA, Lesny D, Neubauer M (2018) Container solutions for HPC systems: a case study of using shifter on blue waters. \narXiv:1808.00556","DOI":"10.1145\/3219104.3219145"},{"key":"22_CR70","unstructured":"Sfiligoi I, Bradley DC, Holzman B, Mhashilkar P, Padhi S, Wurthwein F (2009) The pilot way to grid resources using glide. In: WMS in computer science and information engineering, 2009 WRI world congress on IEEE, vol 2, pp 428\u2013432"},{"key":"22_CR71","unstructured":"Zhang W (2008) Abstract Linux virtual server for scalable network services. \nhttp:\/\/www.linuxvirtualserver.org\/software\/ktcpvs\/ktcpvs.html"},{"issue":"3","key":"22_CR72","first-page":"219","volume":"13","author":"E Deelman","year":"2005","unstructured":"Deelman E, Singh G, Su MH, Blythe J, Gil Y, Kesselman C et al (2005) Pegasus: a framework for mapping complex scientific workflows onto distributed systems. Sci Program 13(3):219","journal-title":"Sci Program"},{"key":"22_CR73","unstructured":"CERN (2018) Rucio. \nhttps:\/\/rucio.readthedocs.io\/en\/latest\/"},{"key":"22_CR74","unstructured":"James Clark (2018) LIGO-Rucio. \nhttps:\/\/github.com\/astroclark\/ligo-rucio"},{"key":"22_CR75","doi-asserted-by":"publisher","first-page":"L13","DOI":"10.3847\/2041-8213\/aa920c","volume":"848","author":"BP Abbott","year":"2017","unstructured":"Abbott BP, Abbott R, Abbott TD, Acernese F, Ackley K, Adams C, Adams T, Addesso P, Adhikari RX, Adya VB et al (2017) Gravitational waves and gamma-rays from a binary neutron star merger: GW170817 and GRB 170817A. Astrophys J Lett 848:L13. \nhttps:\/\/doi.org\/10.3847\/2041-8213\/aa920c","journal-title":"Astrophys J Lett"},{"key":"22_CR76","unstructured":"PyCBC (2018) Free and open software to study gravitational waves. \nhttps:\/\/pycbc.org\/"},{"key":"22_CR77","unstructured":"PyCBC (2018) PyCBC with OSG. \nhttps:\/\/pycbc.org\/pycbc\/latest\/html\/install_lalsuite.html"},{"key":"22_CR78","doi-asserted-by":"publisher","unstructured":"Thapa S, Gardner RW, Herner K, Hufnagel D, Lesny D, Rynge M (2018) Homogenizing OSG and XSEDE: providing access to XSEDE allocations through OSG infrastructure. In: Proceedings of the practice and experience on advanced research computing, PEARC \u201918. ACM, New York, pp 15:1\u201315:7. \nhttps:\/\/doi.org\/10.1145\/3219104.3219157","DOI":"10.1145\/3219104.3219157"},{"key":"22_CR79","unstructured":"Fajardo E (2018) OSG on blue waters, comet and jetstream. \nhttps:\/\/indico.fnal.gov\/event\/12973\/session\/25\/contribution\/9\/material\/slides\/0.pdf"},{"key":"22_CR80","unstructured":"Bauer G (2018) Blue waters user monthly teleconference. \nhttps:\/\/bluewaters.ncsa.illinois.edu\/liferay-content\/document-library\/content\/Blue_Waters_User_Telecon_05212018.pdf"},{"key":"22_CR81","doi-asserted-by":"publisher","unstructured":"Novotny J, Tuecke S, Welch V (2001) An online credential repository for the grid: MyProxy. In: Proceedings 10th IEEE international symposium on high performance distributed computing, pp 104\u2013111. \nhttps:\/\/doi.org\/10.1109\/HPDC.2001.945181","DOI":"10.1109\/HPDC.2001.945181"},{"key":"22_CR82","doi-asserted-by":"publisher","first-page":"072024","DOI":"10.1088\/1742-6596\/331\/7\/072024","volume":"331","author":"T Maeno","year":"2011","unstructured":"Maeno T, De K, Wenaus T, Nilsson P, Stewart GA, Walker R, Stradling A, Caballero J, Potekhin M, Smith D (2011) Overview of ATLAS PanDA workload management. J. Phys Conf Ser 331:072024. \nhttps:\/\/doi.org\/10.1088\/1742-6596\/331\/7\/072024","journal-title":"J. Phys Conf Ser"},{"key":"22_CR83","unstructured":"ATLAS (2018) ATLAS CONNECT virtual cluster service. \nhttps:\/\/connect.usatlas.org\/"},{"key":"22_CR84","doi-asserted-by":"publisher","first-page":"03","DOI":"10.1088\/1742-6596\/664\/3\/032016","volume":"664","author":"B Jayatilaka","year":"2016","unstructured":"Jayatilaka B, Levshina T, Rynge M, Sehgal C, Slyz M (2016) The OSG open facility: a sharing ecosystem. J Phys Conf Ser 664:03. \nhttps:\/\/doi.org\/10.1088\/1742-6596\/664\/3\/032016","journal-title":"J Phys Conf Ser"},{"key":"22_CR85","doi-asserted-by":"publisher","unstructured":"Oleynik D, Panitkin S, Turilli M, Angius A, Oral S, De K, Klimentov A, Wells JC, Jha S (2017) High-throughput computing on high-performance platforms: a case study. In: IEEE 13th International Conference on e-Science (e-Science), pp 295\u2013304. \nhttps:\/\/doi.org\/10.1109\/eScience.2017.43","DOI":"10.1109\/eScience.2017.43"},{"key":"22_CR86","doi-asserted-by":"crossref","unstructured":"Katz DS (2017) AIMES Final Technical Report. \nhttps:\/\/www.osti.gov\/servlets\/purl\/1341733","DOI":"10.2172\/1341733"},{"key":"22_CR87","unstructured":"CERN (2017) The PanDA production and distributed analysis system. \nhttps:\/\/twiki.cern.ch\/twiki\/bin\/view\/PanDA\/PanDA"},{"key":"22_CR88","doi-asserted-by":"publisher","first-page":"032062","DOI":"10.1088\/1742-6596\/513\/3\/032062","volume":"513","author":"T Maeno","year":"2014","unstructured":"Maeno T, De K, Klimentov A, Nilsson P, Oleynik D, Panitkin S, Petrosyan A, Schovancova J, Vaniachine A, Wenaus T, Yu D (2014) Evolution of the ATLAS PanDA workload management system for exascale computational science. J Phys Conf Ser 513:032062. \nhttps:\/\/doi.org\/10.1088\/1742-6596\/513\/3\/032062","journal-title":"J Phys Conf Ser"},{"key":"22_CR89","unstructured":"Science Collaboration LSST, Abell PA, Allison J, Anderson SF, Andrew JR, Angel JRP, Armus L, Arnett D, Asztalos SJ, Axelrod TS et al (2009) LSST Science Book. Version 2. \narXiv: 0912.0201"},{"key":"22_CR90","doi-asserted-by":"publisher","first-page":"1270","DOI":"10.1093\/mnras\/stw641","volume":"460","author":"Dark Energy Survey Collaboration","year":"2016","unstructured":"Collaboration Dark Energy Survey et al (2016) The Dark Energy Survey: more than dark energy\u2014an overview. MNRAS 460:1270. \nhttps:\/\/doi.org\/10.1093\/mnras\/stw641","journal-title":"MNRAS"},{"key":"22_CR91","doi-asserted-by":"publisher","unstructured":"Mohr JJ, Armstrong R, Bertin E, Daues G, Desai S, Gower M, Gruendl R, Hanlon W, Kuropatkin N, Lin H, Marriner J, Petravic D, Sevilla I, Swanson M, Tomashek T, Tucker D, Yanny B (2012) The dark energy survey data processing and calibration system. In: Software and cyberinfrastructure for astronomy II. Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series, vol 8451, p 84510D. \nhttps:\/\/doi.org\/10.1117\/12.926785","DOI":"10.1117\/12.926785"},{"key":"22_CR92","unstructured":"NCSA (2018) Illinois Campus Cluster Program. \nhttps:\/\/campuscluster.illinois.edu"},{"key":"22_CR93","doi-asserted-by":"publisher","first-page":"051","DOI":"10.1088\/1475-7516\/2016\/05\/051","volume":"2016","author":"T Sunayama","year":"2016","unstructured":"Sunayama T, Padmanabhan N, Heitmann K, Habib S, Rangel E (2016) Efficient construction of mock catalogs for baryon acoustic oscillation surveys. J Cosmol Astropart Phys 2016:051. \nhttps:\/\/doi.org\/10.1088\/1475-7516\/2016\/05\/051","journal-title":"J Cosmol Astropart Phys"},{"key":"22_CR94","doi-asserted-by":"publisher","first-page":"54","DOI":"10.3847\/0004-637X\/828\/1\/54","volume":"828","author":"N Li","year":"2016","unstructured":"Li N, Gladders MD, Rangel EM, Florian MK, Bleem LE, Heitmann K, Habib S, Fasel P (2016) PICS: simulations of strong gravitational lensing in galaxy clusters. Astrophys J 828:54. \nhttps:\/\/doi.org\/10.3847\/0004-637X\/828\/1\/54","journal-title":"Astrophys J"},{"key":"22_CR95","unstructured":"DESI Collaboration (2016) The DESI experiment part I: science, targeting, and survey design. \narXiv:1611.00036"},{"issue":"1","key":"22_CR96","doi-asserted-by":"publisher","first-page":"50","DOI":"10.3847\/1538-4357\/aa86a9","volume":"847","author":"Earl Lawrence","year":"2017","unstructured":"Lawrence E, Heitmann K, Kwan J, Upadhye A, Bingham D, Habib S, Higdon D, Pope A, Finkel H, Frontiere N (2017) The Mira-Titan universe. II. Matter power spectrum emulation. Astrophys J 847:50 \nhttps:\/\/doi.org\/10.3847\/1538-4357\/aa86a9","journal-title":"The Astrophysical Journal"},{"key":"22_CR97","unstructured":"Emberson JD, Frontiere N, Habib S, Heitmann K, Larsen P, Finkel H, Pope A (2018) The borg cube simulation: cosmological hydrodynamics with CRK-SPH. \narXiv:1811.03593"},{"key":"22_CR98","unstructured":"Frontera (2018) Next-generation Supercomputer at TACC. \nhttps:\/\/nsf.gov\/news\/news_summ.jsp?cntn_id=296431"},{"issue":"5","key":"22_CR99","doi-asserted-by":"publisher","first-page":"62","DOI":"10.1109\/MCSE.2014.80","volume":"16","author":"J Towns","year":"2014","unstructured":"Towns J, Cockerill T, Dahan M, Foster I, Gaither K, Grimshaw A, Hazlewood V, Lathrop S, Lifka D, Peterson GD, Roskies R, Scott JR, Wilkins-Diehr N (2014) XSEDE: accelerating scientific discovery computing. Sci Eng 16(5):62. \nhttps:\/\/doi.org\/10.1109\/MCSE.2014.80","journal-title":"Sci Eng"},{"key":"22_CR100","doi-asserted-by":"publisher","first-page":"3","DOI":"10.1007\/978-3-319-32243-8_1","volume-title":"Communications in Computer and Information Science","author":"Nancy Wilkins-Diehr","year":"2016","unstructured":"N. Wilkins-Diehr, S. Sanielevici, J. Alameda, J. Cazes, L. Crosby, M. Pierce, R. Roskies (2015) An overview of the XSEDE extended collaborative support program. In: High performance computer applications\u20146th international conference, ISUM. Revised Selected Papers, Communications in Computer and Information Science, vol 595. Springer, Berlin, pp 3\u201313. \nhttps:\/\/doi.org\/10.1007\/978-3-319-32243-8_1"},{"key":"22_CR101","doi-asserted-by":"publisher","first-page":"044039","DOI":"10.1103\/PhysRevD.97.044039","volume":"97","author":"D George","year":"2018","unstructured":"George D, Huerta EA (2018) Deep neural networks to enable real-time multimessenger astrophysics. Phys Rev D 97:044039. \nhttps:\/\/doi.org\/10.1103\/PhysRevD.97.044039","journal-title":"Phys Rev D"},{"key":"22_CR102","doi-asserted-by":"publisher","first-page":"64","DOI":"10.1016\/j.physletb.2017.12.053","volume":"778","author":"D George","year":"2018","unstructured":"George D, Huerta EA (2018) Deep neural networks to enable real-time multimessenger astrophysics. Phys Lett B 778:64. \nhttps:\/\/doi.org\/10.1016\/j.physletb.2017.12.053","journal-title":"Phys Lett B"},{"key":"22_CR103","unstructured":"Rebei A, Huerta EA, Wang S, Habib S, Haas R, Johnson D, George D (2018) Fusing numerical relativity and deep learning to detect higher-order multipole waveforms from eccentric binary black hole mergers. \narXiv:1807.09787"},{"key":"22_CR104","unstructured":"Shen H, George D, Huerta EA, Zhao Z (2017) Denoising gravitational waves using deep learning with recurrent denoising autoencoders. \narXiv: 1711.09919"},{"key":"22_CR105","doi-asserted-by":"publisher","first-page":"101501","DOI":"10.1103\/PhysRevD.97.101501","volume":"97","author":"D George","year":"2018","unstructured":"George D, Shen H, Huerta EA (2018) Classification and unsupervised clustering of LIGO data with deep transfer learning. Phys Rev D 97:101501. \nhttps:\/\/doi.org\/10.1103\/PhysRevD.97.101501","journal-title":"Phys Rev D"},{"key":"22_CR106","unstructured":"Huerta EA, George D, Zhao Z, Allen G (2018) Real-time regression analysis with deep convolutional neural networks. \narXiv:1805.02716"},{"key":"22_CR107","doi-asserted-by":"publisher","first-page":"161","DOI":"10.1146\/annurev-nucl-101917-021019","volume":"68","author":"D Guest","year":"2018","unstructured":"Guest D, Cranmer K, Whiteson D (2018) Deep learning and its application to LHC physics. Annu Rev Nucl Part Sci 68:161. \nhttps:\/\/doi.org\/10.1146\/annurev-nucl-101917-021019","journal-title":"Annu Rev Nucl Part Sci"}],"container-title":["Computing and Software for Big Science"],"original-title":[],"language":"en","link":[{"URL":"http:\/\/link.springer.com\/content\/pdf\/10.1007\/s41781-019-0022-7.pdf","content-type":"application\/pdf","content-version":"vor","intended-application":"text-mining"},{"URL":"http:\/\/link.springer.com\/article\/10.1007\/s41781-019-0022-7\/fulltext.html","content-type":"text\/html","content-version":"vor","intended-application":"text-mining"},{"URL":"http:\/\/link.springer.com\/content\/pdf\/10.1007\/s41781-019-0022-7.pdf","content-type":"application\/pdf","content-version":"vor","intended-application":"similarity-checking"}],"deposited":{"date-parts":[[2020,2,8]],"date-time":"2020-02-08T00:26:28Z","timestamp":1581121588000},"score":1,"resource":{"primary":{"URL":"http:\/\/link.springer.com\/10.1007\/s41781-019-0022-7"}},"subtitle":[],"short-title":[],"issued":{"date-parts":[[2019,2,8]]},"references-count":107,"journal-issue":{"issue":"1","published-print":{"date-parts":[[2019,12]]}},"alternative-id":["22"],"URL":"https:\/\/doi.org\/10.1007\/s41781-019-0022-7","relation":{},"ISSN":["2510-2036","2510-2044"],"issn-type":[{"value":"2510-2036","type":"print"},{"value":"2510-2044","type":"electronic"}],"subject":[],"published":{"date-parts":[[2019,2,8]]},"assertion":[{"value":"6 October 2018","order":1,"name":"received","label":"Received","group":{"name":"ArticleHistory","label":"Article History"}},{"value":"24 January 2019","order":2,"name":"accepted","label":"Accepted","group":{"name":"ArticleHistory","label":"Article History"}},{"value":"8 February 2019","order":3,"name":"first_online","label":"First Online","group":{"name":"ArticleHistory","label":"Article History"}}],"article-number":"5"}}