论文标题

Susy设计的破碎的PT对称光学滤镜

SUSY designed broken PT-symmetric optical filters

论文作者

Tricoli, Ugo, Krapez, Jean-Claude

论文摘要

我们将超对称的Darboux转换应用于光学Helmoltz波方程,以生成分析复杂的值PT对称电位(物理上分级的折射率介电)。然后,PT对称性自发断裂,以控制折射率分布的假想部分的幅度。因此,可以检测到与S矩阵的奇异性有关的共振,该矩阵的奇异性是导致散射光谱中的非凡高传输和反射峰。我们证明了如何控制共振我们可以在确切的单数点上达到最高四个数量级的不同扩增速率。还可以获得总传输和非常高的反射。可以通过扩大电势的空间宽度来跨越光谱的所有可见部分。所有这些电势都可以在单个设备中统一,能够动态控制折射率的虚构部分,从而将可调的动力学光滤光片定义为完美的放大器,透明的屏障或高效率镜。

We apply the supersymmetric Darboux transformation to the optical Helmoltz wave equation to generate analytically complex-valued PT-symmetric potentials (physically a graded refractive index dielectric). PT-symmetry is then spontaneously broken controlling the amplitude of the imaginary part of the refractive index distribution. Consequently a resonance is detectable which is related to a singularity of the S matrix, responsible for extraordinary high transmission and reflection peaks in the scattering spectra. We demonstrate how controlling the resonance we can achieve different amplification rates up to four order of magnitude at the exact singular point. Total transmission and very high reflection can be also obtained. All the visible portion of the spectrum can be spanned by enlarging the spatial width of the potential. All these potentials can be unified in a single device with the capability to dynamically control the imaginary part of the refractive index, thus defining a tunable dynamical optical filter behaving as a perfect amplifier, a transparent barrier or a high efficiency mirror.

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