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具有混合光子晶体和传统波导结构的超紧凑型高效偏振分束器。

Ultracompact high-efficiency polarizing beam splitter with a hybrid photonic crystal and conventional waveguide structure.

作者信息

Kim Seunghyun, Nordin Gregory P, Cai Jingbo, Jiang Jianhua

机构信息

Laboratory for Integrated Computing and Optoelectronic Systems, University of Alabama in Huntsville, Huntsville, Alabama 35899, USA.

出版信息

Opt Lett. 2003 Dec 1;28(23):2384-6. doi: 10.1364/ol.28.002384.

Abstract

We propose an ultracompact high-efficiency polarizing beam splitter that operates over a wide wavelength range and is based on a hybrid photonic crystal and a conventional waveguide structure. Within a small area (15 microm x 10 microm), this polarizing beam splitter separates TM- and TE-polarized modes into orthogonal output waveguides. Results of simulations with the two-dimensional finite-difference time-domain method show that 99.3% of TM-polarized light is deflected by the photonic crystal structure (with a 28.0-dB extinction ratio), whereas 99.0% of TE-polarized light propagates through the structure (with a 32.2-dB extinction ratio). Wave vector diagrams are employed to explain the operation of a polarizing beam splitter. Tolerance analysis reveals a large tolerance to fabrication errors.

摘要

我们提出了一种超紧凑型高效偏振分束器,它基于混合光子晶体和传统波导结构,可在宽波长范围内工作。在小面积(15微米×10微米)内,这种偏振分束器将TM偏振模式和TE偏振模式分离到正交输出波导中。二维时域有限差分法的模拟结果表明,99.3%的TM偏振光被光子晶体结构偏转(消光比为28.0分贝),而99.0%的TE偏振光通过该结构传播(消光比为32.2分贝)。利用波矢图来解释偏振分束器的工作原理。容差分析表明对制造误差具有较大的容差。

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