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THz Mixing with High- T C ?Hot Electron Bolometers: A Performance Modeling Assessment for Y-Ba-Cu-O Devices

机译:太赫兹与高T C热电子流量计混合:Y-Ba-Cu-O器件的性能建模评估

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Hot electron bolometers (HEB) made from high- T C superconducting YBa 2 Cu 3 O 7 – x (YBCO) oxide nano-constrictions are promising THz mixers, due to their expected wide bandwidth, large mixing gain, and low intrinsic noise. The challenge for YBCO resides, however, in the chemical reactivity of the material and the related aging effects. In this paper, we model and simulate the frequency dependent performance of YBCO HEBs operating as THz mixers. We recall first the main hypotheses of our hot spot model taking into account both the RF frequency effects in the YBCO superconducting transition and the nano-constriction impedance at THz frequencies. The predicted performance up to 4 THz is given in terms of double sideband noise temperature T DSB and conversion gain G . At 2.5 THz for instance, T DSB ? 1000 K and G ? ? 6 dB could be achieved at 12.5 μW local oscillator power. We then consider a standoff target detection scheme and examine the feasibility with YBCO devices. For instance, detection at 3 m through cotton cloth in passive imaging mode could be readily achieved in moderate humidity conditions with 10 K resolution.
机译:由高T C超导YBa 2 Cu 3 O 7 – x(YBCO)氧化物纳米收缩材料制成的热电子辐射计(HEB)由于其预期的宽带宽,大的混合增益和低的固有噪声而成为有希望的THz混合器。然而,YBCO面临的挑战在于材料的化学反应性和相关的时效效应。在本文中,我们对作为THz混频器的YBCO HEB的频率相关性能进行建模和仿真。我们首先回顾热点模型的主要假设,要同时考虑YBCO超导转变中的RF频率效应和THz频率下的纳米压缩阻抗。根据双边带噪声温度T DSB和转换增益G给出了高达4 THz的预测性能。例如,在2.5 THz时,T DSB? 1000 K和G ?在12.5μW本地振荡器功率下可以达到6 dB。然后,我们考虑一种隔离目标检测方案,并检查YBCO设备的可行性。例如,在中等湿度条件下以10 K分辨率通过棉布以被动成像模式在3 m处进行检测很容易。

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