3D Modeling of a Superconducting Transition Edge Detector

Samaneh Ansari, Rana Nazifi, Mehdi Yaghoubi Arzefouni, R. Mohajeri, S. I. Mirzaei, M. Fardmanesh
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Abstract

Improving the sensitivity and the time response of the superconducting transition edge detectors as one of the most promising technologies for millimeter and sub-millimeter wavelength radiation power detection is essential. Having an accurate 3D model for these detectors enables us to design faster detectors with higher sensitivity and detectivity. In this paper, we report on a 3-dimensional finite element model of a current biased superconducting YBa2Cu3O7-x (YBCO) transition-edge detector fabricated by a low-cost Metal-Organic deposition method. The obtained simulation results are in good agreement with the measured response of the detectors. Also, as the simulation results suggest, decreasing the thermal boundary conductance of the YBCO film and substrate interface would result in higher response at the modulation frequencies, higher than the knee frequency, at which the response is governed by the film and substrate materials and geometries.
超导跃迁边缘探测器的三维建模
提高超导跃迁边缘探测器的灵敏度和时间响应是毫米波和亚毫米波辐射功率检测中最有前途的技术之一。拥有这些探测器的精确3D模型使我们能够设计出具有更高灵敏度和探测性的更快的探测器。本文报道了采用低成本金属-有机沉积方法制备的电流偏置超导YBa2Cu3O7-x (YBCO)过渡边缘探测器的三维有限元模型。仿真结果与探测器的实测响应吻合较好。此外,模拟结果表明,降低YBCO薄膜和衬底界面的热边界导率会导致调制频率下的响应更高,高于膝频率,膝频率下的响应受薄膜和衬底材料和几何形状的控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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