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Comparison of Noise Performance of the dc SQUID Bootstrap Circuit With That of the Standard Flux Modulation dc SQUID Readout Scheme

机译:直流SQUID自举电路的噪声性能与标准磁通调制直流SQUID读出方案的噪声性能比较

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摘要

We recently presented a direct readout technique for the dc Superconducting QUantum Interference Device (SQUID) without flux modulation (FM), operated in voltage bias mode, and named it the SQUID Bootstrap Circuit (SBC). The SBC combines additional voltage and current feedbacks to minimize the room-temperature preamplifier noise. The main point of this paper is to compare the flux noise performance of the SBC readout with that of the FM scheme using a sine wave modulation signal. Several liquid-helium-cooled SQUID magnetometers with different layouts and loop inductances were characterized using these two readout schemes. Measured noise was comparable to or even lower than that measured by FM electronics. Furthermore, the SBC noise performance was evaluated as function of resistance which, when properly adjusted, permits us to nearly fulfill the critical noise suppression condition. We believe SBC to be a promising candidate for multi-channel SQUID systems.
机译:我们最近提出了一种用于直流超导量子干扰设备(SQUID)的无磁通调制(FM)的直接读出技术,该技术以电压偏置模式工作,并将其命名为SQUID自举电路(SBC)。 SBC结合了附加的电压和电流反馈,以最大程度地降低室温前置放大器的噪声。本文的重点是比较使用正弦波调制信号的SBC读数与FM方案的通量噪声性能。使用这两种读出方案对几种具有不同布局和环路电感的液氦冷却SQUID磁力计进行了表征。测得的噪声与FM电子设备测得的噪声相当甚至更低。此外,将SBC噪声性能评估为电阻的函数,如果对其进行适当调整,则可以使我们几乎满足关键的噪声抑制条件。我们认为SBC是多通道SQUID系统的有希望的候选者。

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