首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Comparative study of one-dimensional photonic crystal heterostructure doped with a high and low-transition temperature superconducting for a low-temperature sensor
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Comparative study of one-dimensional photonic crystal heterostructure doped with a high and low-transition temperature superconducting for a low-temperature sensor

机译:用高温高转变温度超细化对低温传感器掺杂的一维光子晶体异质结构的对比研究

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摘要

In this work, we present a theoretical study dealing with the sensitivity to physical parameters such as defect nature and thickness, and temperature. Indeed, the sensitivity considerably enhanced via the use of one-dimensional photonic crystal heterostructure (1D-PCH) which is composed of a few layers of ordinary materials, and superconducting defects. The aim of this paper is to compare the sensitivity of two proposed models consisting of (a) 1D-PCH doped with a high-transition temperature superconductor (Yttrium barium copper oxide (YBCO)), and (b) 1D-PCH doped with a low-transition temperature superconductor (niobium nitrure (NbN)). By using the transfer-matrix method (TMM), it has been demonstrated that model (b) is very sensitive compared to model (a). Therefore, the superconducting defect nature on 1D-PCH, using a few layers can play a fundamental role in a very low-temperature sensor.
机译:在这项工作中,我们提供了一个理论研究,处理对物理参数的敏感性,如缺陷性质和厚度,温度。 实际上,通过使用由几层普通材料和超导缺陷组成的一维光子晶体异质结构(1D-PCH),灵敏度显着增强。 本文的目的是比较由高转换温度超导体(YTTRIUM钡氧化钡(YBCO))的(a)1d-pch组成的两个提出模型的敏感性,并且(b)1d-pch用a掺杂 低转化温度超导体(铌硝基(NBN))。 通过使用转移矩阵方法(TMM),已经证明了与型号(A)相比的模型(B)非常敏感。 因此,使用少数层的1D-PCH上的超导缺陷性质可以在非常低温的传感器中发挥基本作用。

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