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Simultaneous realization of a coherent perfect absorber and laser by zero-index media with both gain and loss

机译:零损耗介质同时实现增益和损耗的相干完美吸收体和激光

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摘要

We investigate a unique type of zero-index medium with both gain and loss (ZIMGL), whose effective permittivity and permeability are both purely imaginary but of opposite signs. We analytically show that, by using a slab of ZIMGL with equal magnitude of loss and gain, simulation realization of a coherent perfect absorber (CPA) and laser, i.e., the so-called CPA laser, can be achieved. Previously the CPA laser was proposed in parity-time (PT) symmetric systems. However, the ZIMGL does not possess the PT symmetry and thus the underlying physics is distinctly different. By designing a photonic crystal (PC) composed of core-shell rods, with loss and gain distributed in either the core or the shell, we have realized such a ZIMGL. The CPA-laser functionality of such a PC is also confirmed in our numerical simulations. Our work provides a different approach for simultaneous realization of CPA and laser besides PT-symmetric systems.
机译:我们研究具有增益和损耗(ZIMGL)的独特类型的零折射率介质,其有效介电常数和磁导率纯属虚构,但符号相反。我们分析地表明,通过使用具有相同损耗和增益幅度的ZIMGL平板,可以实现相干完美吸收体(CPA)和激光器(即所谓的CPA激光器)的仿真实现。以前,CPA激光器是在奇偶时间(PT)对称系统中提出的。但是,ZIMGL不具有PT对称性,因此基本物理原理明显不同。通过设计由核-壳棒组成的光子晶体(PC),损耗和增益分布在核或壳中,我们实现了这种ZIMGL。我们的数值模拟也证实了这种PC的CPA激光功能。除了PT对称系统之外,我们的工作还提供了另一种同时实现CPA和激光的方法。

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