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The system behaves as a non\u2010Hermitian Hamiltonian (NH Hamiltonian), the real part of which is related to the internal dynamics of the system, and the imaginary part reflects the energy exchange between the system and the outside environment. By utilizing double EIT windows and adjusting the intensity of the dressing field, the number and positions of eigenvalues can be modulated to construct quantum entanglement sources for non\u2010Hermitian systems, thereby laying the foundation for quantum communication and quantum computing. To prepare photon entanglement sources, it is necessary to study the correlation of high\u2010dimensional quantized energy levels under PT symmetry and symmetry breaking induced by the dressing field; Hamiltonian correlation matrix of the non\u2010Hermitian system characterizes the relationship between gain and loss, detuning and dephasing rate in the reaction energy\u2010level system, and the coupling relationship of the dressing field. The energy\u2010level system itself is non\u2010Hermitian, and the study of symmetry breaking is conducted by controlling EPs during the level control process through the dressing field, thus eliminating the need for introducing artificial photonic structures. The third\u2010order non\u2010Hermitian characteristics of the PT\u2010NH system reflect the positional relationship between the cascade field and the nested field. When the Rabi frequency (dephase rate) of the dressing field is the dominant factor, the real (imaginary) part of the eigenvalues is split, resulting in in\u2010phase (out\u2010of\u2010phase) constructive (destructive) transformations of the dressing order.<\/jats:p>","DOI":"10.1155\/que2\/9174040","type":"journal-article","created":{"date-parts":[[2025,1,22]],"date-time":"2025-01-22T11:59:11Z","timestamp":1737547151000},"update-policy":"https:\/\/doi.org\/10.1002\/crossmark_policy","source":"Crossref","is-referenced-by-count":0,"title":["Natural Non\u2010Hermitian Control of High\u2010Dimensional Rabi Oscillations of Triphoton Using Multidressing 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