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Analysis of Bolometer Operation near the Superconducting Transition Edge Using Microwave Readout

机译:使用微波读数分析超导过渡边缘附近的测波器操作

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摘要

The results of pioneering experiments on using a new method of microwave recording the bolometric response from a metal film near its superconducting transition edge are analyzed. Experiments are carried out at 4.5 K using a thin-film niobium absorber with a critical temperature of 6.7 K. The validity of the adopted electrodynamic model is confirmed. The chip contains a miniature antenna tuned to approximately 600 GHz and integrated into a planar resonator with a frequency of 6 GHz, which is weakly coupled with a pump line. Based on the experimental and model data, the presence of electrothermal feedback is shown, stability criteria are found, and I–V characteristics at microwaves are obtained. Bulk experimental samples with an absorber measuring 5 μm × 2.5 μm × 15 nm are fabricated with optical photolithography. At an amplifier channel noise of 3 K, the optical sensitivity of a prototype receiver can be expected at a level of 10~(–15) W/Hz~(1/2).
机译:分析了使用一种新的微波记录新材料在超导过渡边缘附近的金属膜的辐射热响应的开创性实验的结果。使用临界温度为6.7 K的薄膜铌吸收剂在4.5 K下进行了实验。证实了所采用的电动模型的有效性。该芯片包含一个调谐到大约600 GHz的微型天线,并集成到频率为6 GHz的平面谐振器中,该谐振器与泵浦线弱耦合。根据实验和模型数据,显示了电热反馈的存在,找到了稳定性标准,并获得了微波的IV特性。用光学光刻法制造了具有5μm×2.5μm×15 nm吸收体的大量实验样品。在放大器通道噪声为3 K的情况下,可以预期原型接收机的光学灵敏度为10〜(–15)W / Hz〜(1/2)。

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