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首页> 外文期刊>Superconductor Science & Technology >Appropriate microwave frequency selection for biasing superconducting hot electron bolometers as terahertz direct detectors
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Appropriate microwave frequency selection for biasing superconducting hot electron bolometers as terahertz direct detectors

机译:适当的微波频率选择,用于偏置超导热电子钻头作为太赫兹直接检测器

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摘要

Terahertz (THz) direct detectors based on superconducting niobium nitride (NbN) hot electron bolometers (HEBs) and biased by a simple microwave (MW) source have been studied. The frequency and power of the MW are selected by measuring the MW responses of the currentvoltage (I-V) curves and resistance-temperature (R-T) curves of the NbN HEBs. The non-uniform absorption theory is used to explain the current jumps in the I-V curves and the resistance jumps in the R-T curves. Compared to the thermal biasing, the MW biasing method can improve the sensitivity, make the readout system much easier and consumes less liquid helium, which is important for long lasting experiments. The noise equivalent power (NEP) of 1.6 pW Hz(-1/2) and the response time of 86 ps are obtained for the detectors working at 4.2 K and 0.65 THz.
机译:已经研究了基于超导氮化铌(NBN)热电子钻头(HEBS)并由简单的微波(MW)源偏置的直接探测器。 通过测量当前电压(I-V)曲线和电阻 - 温度(R-T)曲线的MW响应来选择MW的频率和功率。 非均匀的吸收理论用于解释I-V曲线中的电流跳跃,并且在R-T曲线中跳跃。 与热偏置相比,MW偏置方法可以提高灵敏度,使读出系统更容易,消耗较少的液氦,这对于长期持久实验很重要。 为4.2 k和0.65六茨工作的探测器获得1.6PW Hz(-1/2)的噪声等效功率(NEP)和86 ps的响应时间。

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