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Numerical Investigation of a Short Polarization Beam Splitter Based on Dual-Core Photonic Crystal Fiber with As2S3 Layer

机译:基于双芯光子晶体纤维的短偏振分射器的数值研究具有AS2S3层

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摘要

A polarization beam splitter is an important component of modern optical system, especially a splitter that combines the structural flexibility of photonic crystal fiber and the optical modulation of functional material. Thus, this paper presents a compact dual-core photonic crystal fiber polarization beam splitter based on thin layer As S . The mature finite element method was utilized to simulate the performance of the proposed splitter. Numerical simulation results indicated that at 1.55 μm, when the fiber device length was 1.0 mm, the x- and y-polarized lights could be split out, the extinction ratio could reach −83.6 dB, of which the bandwidth for extinction ratio better than −20 dB was 280 nm. It also had a low insertion loss of 0.18 dB for the x-polarized light. In addition, it can be completely fabricated using existing processes. The proposed compact polarization beam splitter is a promising candidate that can be used in various optical fields.
机译:偏振分束器是现代光学系统的重要组成部分,尤其是将光子晶体纤维的结构柔韧性和功能材料的光学调制结合起来的分离器。因此,本文介绍了一种基于薄层的紧凑型双核光子晶体纤维偏振束分离器。利用成熟有限元方法来模拟所提出的分离器的性能。数值模拟结果表明,在1.55μm,当光纤器件长度为1.0mm时,X和Y偏振光可以分开,消光比可以达到-83.6dB,其中消光比的带宽优于 - 20 dB为280nm。对于X偏振光,它也具有0.18dB的低插入损耗。此外,它可以使用现有过程完全制造。所提出的紧凑型偏振束分离器是可用于各种光学领域的有希望的候选者。

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