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Photonic-crystal switch divider based on Ge2Sb2Te5 thin films

机译:基于Ge2Sb2Te5薄膜的光子晶体开关分配器

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摘要

A three-port phase-change photonic-crystal switch divider based on Ge2Sb2Te5 chalcogenide thin film was proposed. The chalcogenide material used was determined to have a high refractive index and fast phase-change speed by using laser radiation. The structure with a T-junction cavity was used to achieve three switch functions: switching "ON" in only one output port, switching "OFF" in both output ports, and dividing signals into two output ports. The transmission properties of the designed device at 2.0 mu m were studied by the finite difference time domain method, which showed that the switch divider can achieve very high switching efficiency by optimizing T-junction cavity parameters. The scaling laws of photonic crystals revealed that the operating wavelength of the designed structure can be easily extended to another wavelength in the midinfrared region. (C) 2016 Optical Society of America
机译:提出了一种基于Ge2Sb2Te5硫族化物薄膜的三端口相变光子晶体开关分频器。通过使用激光辐射,确定所使用的硫族化物材料具有高折射率和快速的相变速度。使用具有T型结腔的结构来实现三种开关功能:仅在一个输出端口中将“ ON”开关切换到两个输出端口中的“ OFF”开关,并将信号分为两个输出端口。通过时域有限差分法研究了所设计器件在2.0μm处的传输特性,结果表明,通过优化T型结腔参数,开关分频器可以获得很高的开关效率。光子晶体的比例定律表明,设计结构的工作波长可以轻松扩展到中红外区域的另一个波长。 (C)2016美国眼镜学会

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