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Investigation and optimization of low-frequency noise performance in readout electronics of dc superconducting quantum interference device

机译:直流超导量子干扰装置的读出电子器件低频噪声性能的研究和优化

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摘要

We investigated and optimized the low-frequency noise characteristics of a preamplifier used for readout of direct current superconducting quantum interference devices (SQUIDs). When the SQUID output was detected directly using a room-temperature low-voltage-noise preamplifier, the low-frequency noise of a SQUID system was found to be dominated by the input current noise of the preamplifiers in case of a large dynamic resistance of the SQUID. To reduce the current noise of the preamplifier in the low-frequency range, we investigated the dependence of total preamplifier noise on the collector current and source resistance. When the collector current was decreased from 8.4 mA to 3 mA in the preamplifier made of 3 parallel SSM2220 transistor pairs, the low-frequency total voltage noise of the preamplifier (at 0.1 Hz) decreased by about 3 times for a source resistance of 30 Ω whereas the white noise level remained nearly unchanged. Since the relative contribution of preamplifier's input voltage and current noise is different depending on the dynamic resistance or flux-to-voltage transfer of the SQUID, the results showed that the total noise of a SQUID system at low-frequency range can be improved significantly by optimizing the preamplifier circuit parameters, mainly the collector current in case of low-noise bipolar transistor pairs.
机译:我们研究并优化了用于读取直流超导量子干扰设备(SQUID)的前置放大器的低频噪声特性。当使用室温低压噪声前置放大器直接检测SQUID输出时,如果SQUID系统的动态电阻较大,则发现SQUID系统的低频噪声受前置放大器的输入电流噪声支配。乌贼。为了降低前置放大器在低频范围内的电流噪声,我们研究了前置放大器总噪声对集电极电流和源电阻的依赖性。当由3对并联SSM2220晶体管对构成的前置放大器的集电极电流从8.4 mA降至3 mA时,对于30Ω的源电阻,前置放大器的低频总电压噪声(在0.1 Hz时)降低了约3倍。而白噪声水平几乎保持不变。由于前置放大器的输入电压和电流噪声的相对贡献因SQUID的动态电阻或磁通-电压传递而异,因此,结果表明,通过降低SQUID系统的低频总噪声,可以降低噪声。优化前置放大器的电路参数,主要是低噪声双极晶体管对时的集电极电流。

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