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Detectivity Analysis and Optimization of Large-Area Freestanding-Type HTS Bolometers

机译:大面积独立式高温超导流量计的灵敏度分析与优化

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摘要

Detectivity optimization of large-area freestanding-type YBCO superconducting bolometric detectors is theoretically and experimentally investigated. The effect of the device thermal parameters on the theoretical total noise-equivalent power based on background radiation, thermal fluctuation, and Johnson noise is considered. By analytical optimization of the total noise-equivalent power (NEP) of the device with respect to the thermal parameters and radiation modulation frequency, the maximum sensitivity and optimal thermal parameters of the bolometric detector are obtained. Relating device thermal parameters to the special case of the large substrate dimensions, the optimum device geometry is calculated. In addition, several devices with different geometries are fabricated to experimentally test the analysis. By performing experimental optical responsivity and detectivity measurements for these devices, the effect of the geometrical parameters on the maximum sensitivity of bolometric detectors is also empirically obtained. The analytical and experimental results are compared and presented in this paper.
机译:理论上和实验上研究了大面积自立式YBCO超导辐射热探测器的探测性能优化。考虑了器件热参数对基于背景辐射,热波动和约翰逊噪声的理论总等效噪声功率的影响。通过相对于热参数和辐射调制频率对设备的总噪声等效功率(NEP)进行分析优化,可以获得辐射热探测器的最大灵敏度和最佳热参数。将器件热参数与大基板尺寸的特殊情况联系起来,即可计算出最佳器件几何形状。此外,制造了几种具有不同几何形状的设备,以通过实验测试分析。通过对这些设备进行实验性的光学响应性和探测性测量,还可以凭经验获得几何参数对辐射热检测器最大灵敏度的影响。比较分析结果和实验结果,并在本文中进行介绍。

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