首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Physics of elliptical reflectors at large reflection and divergence angles II: Analysis of optical beam distortions in integrated ultra-large-angle elliptical curved reflectors
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Physics of elliptical reflectors at large reflection and divergence angles II: Analysis of optical beam distortions in integrated ultra-large-angle elliptical curved reflectors

机译:大反射角和发散角的椭圆形反射镜的物理特性II:集成超大角度椭圆形弯曲反射镜的光束畸变分析

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In this work, we study the behavior of elliptical reflectors in nanophotonic integrated circuits in the context of two-dimensional multimode Gaussian beam. We show that the transformation of the beam profile at the input/output waveguide mouths, and the transformation of the beam profile at the reflector can be described in terms of 2D Hermite-Gaussian (HG) beam modes under first order approximation (FOA), referred to as HG-FOA. Due to the wavelength-scale waveguides in nanophotonic integrated circuits, the beams incident on the elliptical reflector have large diffraction angle which will result in asymmetric amplitude distortion upon non-normal reflection even for ideal elliptical reflecting surfaces. The amplitude distortion can be illustrated in the oscillation of the peaks of the reflected beam profiles around the propagation axis of the reflected beam. The amplitude distortion can also be shown by the deterioration in the coupling efficiency from the input waveguide to the output waveguide due to the excitation of higher order HG modes during the reflection. These two observations can both be explained by the HG-FOA method and are verified with Finite-Difference Time-Domain (FDTD) method. Moreover, we show that the coupling loss from the input waveguide to the output waveguide due to the higher order modes excited can be eliminated via insertion of a second reflector. Two specific arrangement of the second reflector are discussed and verified by the FDTD simulation.
机译:在这项工作中,我们研究了二维多模高斯光束在纳米光子集成电路中椭圆反射器的行为。我们表明,可以通过一阶近似(FOA)下的2D Hermite-Gaussian(HG)光束模式来描述输入/输出波导口处的光束轮廓的变换和反射器处的光束轮廓的变换,称为HG-FOA。由于纳米光子集成电路中的波长尺度波导,入射在椭圆形反射器上的光束具有较大的衍射角,即使对于理想的椭圆形反射表面,其在非法向反射时也会导致不对称的幅度失真。振幅畸变可以在反射光束轮廓的峰值围绕反射光束的传播轴的振荡中示出。振幅畸变也可以通过反射期间由于较高阶HG模式的激发而导致的从输入波导到输出波导的耦合效率的降低来表示。这两个观察结果都可以通过HG-FOA方法进行解释,并可以通过时域有限差分(FDTD)方法进行验证。此外,我们表明,通过插入第二个反射器,可以消除由于激发的高阶模而导致的从输入波导到输出波导的耦合损耗。讨论了第二反射器的两种具体布置,并通过FDTD仿真进行了验证。

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