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A compact ultrabroadband polarization beam splitter utilizing a hybrid plasmonic Y-branch

机译:一种利用混合等离子体Y分支的紧凑型超宽带偏振分束器

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摘要

A compact and ultrabroadband polarization beam splitter (PBS) utilizing a hybrid plasmonic Y-branch (HPYB) on a silicon-on-insulator (SOI) platform is proposed and numerically demonstrated. The HPYB consists of a vertical hybrid plasmonic waveguide (HPW) and a horizontal HPW formed by silicon (Si) and silver (Ag) strip waveguides sandwiched with a silicon dioxide (SiO2) layer, in which the vertical and horizontal hybrid plasmonic modes (HPMs) are excited by the input transverse electric (TE) and transverse magnetic (TM) modes, respectively. The HPMs are split into different ports and coupled back to TE and TM modes to implement the polarization splitting function. A simplified and compact HPYB is robust for the HPMs' generation. The structure is wavelength insensitive since the HPMs' excitation is weakly correlated to the optical wavelengths. The simulation results show that the HPYB-based PBS has a compact footprint of 5×1.8 µm2 and an ultralarge working bandwidth of 285nm, with the polarization crosstalk -10 dB and the worst-case TE (TM) mode insertion loss of -1.53 (-2.35) dB. The device also exhibits a large fabrication tolerance of 210nm variation (from -100 to 110nm) to the waveguide width for both polarizations.
机译:提出并在绝缘体上硅(SOI)平台上利用混合等离子体Y分支(HPYB)的紧凑型超宽带偏振分束器(PBS)。 HPYB由垂直混合等离子体激元波导(HPW)和水平HPW组成,水平HPW由夹在二氧化硅(SiO2)层之间的硅(Si)和银(Ag)条形波导形成,其中垂直和水平混合等离子体激元模式(HPM) )分别由输入横向电(TE)和横向磁(TM)模式激励。 HPM被拆分为不同的端口,并耦合回TE和TM模式以实现偏振拆分功能。简化而紧凑的HPYB对于HPM的一代来说是强大的。该结构对波长不敏感,因为HPM的激发与光波长之间的关系很弱。仿真结果表明,基于HPYB的PBS具有5×1.8 µm2的紧凑型占位面积和285nm的超大工作带宽,极化串扰<-10 dB,最坏情况下的TE(TM)模式插入损耗为-1.53 (-2.35)分贝。对于两种极化,该器件还对波导宽度表现出210nm的较大制造公差(从-100到110nm)。

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