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Contrasting eigenvalue and singular-value spectra for lasing and antilasing in a PT-symmetric periodic structure

机译:PT对称周期结构中的激光和抗晒的特征值和奇异值光谱

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摘要

It has been proposed and demonstrated that lasing and coherent perfect absorption (CPA or "antilasing") coexist in parity-time (PT) symmetric photonic systems. In this work we show that the spectral signature of such a CPA laser displayed by the singular value spectrum of the scattering matrix (S) can be orders of magnitude wider than that displayed by the eigenvalue spectrum of S. Since the former reflects how strongly light can be absorbed or amplified and the latter announces the spontaneous symmetry breaking of S, these contrasting spectral signatures indicate that near perfect absorption and extremely strong amplification can be achieved even in the PT-symmetric phase of S, which is known for and defined by its flux-conserving eigenstates. We also show that these contrasting spectral signatures are accompanied by strikingly different sensitivities to disorder and imperfection, suggesting that the eigenvalue spectrum is potentially suitable for sensing and the singular value spectrum for robust switching. A differential light amplifiermay also be devised based on these two spectra.
机译:已经提出并证明了激光和相干的完美吸收(CPA或“溶解”)在奇偶校正时间(PT)对称光子系统中共存。在这项工作中,我们表明,由散射矩阵的奇异值谱显示的这种CPA激光器的光谱特征可以是宽度宽的级比S的特征值谱显示。由于前者反射了光线可以被吸收或放大,后者宣布S的自发对称性破裂,这些对比光谱签名表明即使在S的Pt对称阶段也可以实现接近完美的吸收和极强的放大,这是由其所知和定义的助磁场保护特征。我们还表明,这些对比光谱签名伴随着对紊乱和缺陷的惊人不同的敏感性,表明特征值谱可能适用于鲁棒开关的感测和奇异值谱。还基于这两个光谱设计了差分光放大器。

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