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Design of a compact polarizing beam splitter based on a photonic crystal ring resonator with a triangular lattice

机译:基于具有三角晶格的光子晶体环形谐振器的紧凑型偏振分束器的设计

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We propose and simulate a new kind of compact polarizing beam splitter (PBS) based on a photonic crystal ring resonator (PCRR) with complete photonic bandgaps. The two polarized states are separated far enough by resonant and nonresonant coupling between the waveguide modes and the microring modes. Some defect holes are utilized to control the beam propagation. The simulated results obtained by the finite-difference time-domain method show that high transmission (over 95percent) is obtained and the polarization separation is realized with a length as short as 3.1 (mu)m. The design of the proposed PBS can be flexible, thanks to the advantages of PCRRs.
机译:我们提出并模拟一种基于具有完整光子带隙的光子晶体环谐振器(PCRR)的新型紧凑型偏振分束器(PBS)。通过在波导模式和微环模式之间的共振和非共振耦合,将两个极化状态分开得足够远。利用一些缺陷孔来控制光束传播。通过时域有限差分法获得的仿真结果表明,可以获得高透射率(超过95%),并且实现了偏振分离,长度短至3.1μm。由于PCRR的优点,所提出的PBS的设计可以是灵活的。

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