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Ultracompact polarization-insensitive power splitter using subwavelength-grating-based MMI couplers on an SOI platform

机译:Ultracopact极化不敏感功率分配器使用SOI平台上的基于基于亚波长光栅的MMI耦合器

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An ultracompact and polarization-insensitive power splitter using a subwavelength-grating-based multimode interference (MMI) coupler on an SOI platform is proposed and analyzed in detail. By properly tailoring the structural parameters of the subwavelength gratings embedded in the center of the MMI coupler, the effective reflective indices for TE and TM modes supported by this MMI coupler can be engineered, leading to equal coupling lengths for the two polarizations and an efficient reduction in length for the used MMI coupler. As a result, an ultracompact polarization-insensitive power splitter can be realized. Moreover, to effectively minimize the loss, tapered wavegaides are used, and two right angles are cut at both corners of the used MMI coupler. Results show that a footprint of 2.2 mu m x 3.8 mu m for the MMI region is achieved with an insertion loss of 0.07 dB for both TE and TM modes (polarization dependent loss similar to 0 dB) and a reflection loss of -28.29 dB (-31.25 dB) for TE mode at the wave-length of 1.55 mu M. Insertion loss below 0.3 dB is obtained over the bandwidth of 200 nm, covering the C-band. In addition, fabrication tolerances to the structural parameters are analyzed, and the injected light propagating through the power splitter is also presented. (C) 2020 Optical Society of America
机译:提出并详细地提出了使用SOI平台上的基于子波长光栅的多模干扰(MMI)耦合器的超自然和极化不敏感功率分路器。通过适当地定制嵌入MMI耦合器的中心的子波长光栅的结构参数,可以设计由该MMI耦合器支持的TE和TM模式的有效反射指标,从而导致两种偏振的相等耦合长度和有效的减少使用MMI耦合器的长度。结果,可以实现超自联极化不敏感的功率分离器。此外,为了有效地减少损耗,使用锥形波形,并且在使用的MMI耦合器的两个角处切割两根直角。结果表明,对于MMI区域为2.2μmx3.8 mu m的占地面积,通过插入损耗为0.07 dB的TE和TM模式(极化相关损耗与0 dB类似)和-28.29 dB的反射损耗( - 31.25 dB)对于1.55μm的波长的TE模式。在200nm的带宽上获得0.3dB以下的插入损耗,覆盖C波段。另外,分析了对结构参数的制造公差,并且还呈现通过电力分离器传播的注射光。 (c)2020美国光学学会

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    《Applied optics》 |2020年第7期|共7页
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