首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Two Channel Thermally Tunable Band-Stop Filter for Wavelength Selective Switching Applications by Using 1D Ternary Superconductor Photonic Crystal
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Two Channel Thermally Tunable Band-Stop Filter for Wavelength Selective Switching Applications by Using 1D Ternary Superconductor Photonic Crystal

机译:使用一维三元超导体光子晶体的波长选择开关应用的两通道热可调带阻滤波器

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摘要

By studying temperature-dependent dispersion characteristics and group velocity of 1D ternary photonic crystal (TPC) composed of dielectric-superconductor-dielectric materials, a thermally tunable band-stop filter which is capable of stopping unique wavelength channels without causing any interference amongst equally spaced wavelength channels of full width at half maximum of 1 nm each as per the requirement of wavelength division multiplexing standards adopted by the International Telecommunication Union specifying channel spacing in terms of frequency (wavelength) is suggested. The proposed structure can efficiently work as a two-channel wavelength selective switch for wavelength division multiplexing (WDM)-based all-optical networks. This study also gives theoretical insight to design some new kind of optical memories and tunable buffers which holds data temporary and have potential applications in modern communication systems.
机译:通过研究由介电超导体介电材料组成的一维三元光子晶体(TPC)随温度变化的色散特性和群速度,该热可调带阻滤波器能够停止独特的波长通道,而不会在等距波长之间造成任何干扰建议按照国际电信联盟采用的波分复用标准的要求,分别以最大波长1 nm的一半的最大宽度来创建信道,并以频率(波长)为单位指定信道间隔。所提出的结构可以有效地用作基于波分复用(WDM)的全光网络的两通道波长选择开关。这项研究还为设计一些新型的光学存储器和可调缓冲器提供了理论上的见识,它们可以暂时保存数据并在现代通信系统中具有潜在的应用。

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