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Readout System for NanoSQUID Sensors Using a SQUID Amplifier

机译:使用SQUID放大器的NanoSQUID传感器的读数系统

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NanoSQUID sensors (Superconducting Quantum Interference Devices with nanoscale dimensions) are regarded as a useful tool for sensitive magnetic measurements and have achieved a low noise level. The nanoSQUIDs comprising nanobridge junctions are fabricated by photolithography followed by focused ion beam patterning. While previously such self-shunted nanobridge junctions have shown hysteretic characteristics at 4.2 K, we propose an approach to increase the operational temperature in order to reduce the critical current of the device. We report the design of a readout system, comprising all necessary components to achieve a low noise readout, which is limited by the nanoSQUID noise. It consists of a variable temperature (5–10 K) liquid helium probe stick, a coil system and a SQUID preamplifier. The orthogonal coil system enables particle magnetization up to 100 mT in parallel to and a flux bias of up to 28 mT perpendicular to the nanoSQUID, to set the working point. The nanoSQUID achieves a low white noise level of 0.23 $muPhi_{0}/sqrt{rm Hz}$ including a readout contribution of 0.10 $muPhi_{0}/sqrt{rm Hz}$.
机译:NanoSQUID传感器(具有纳米级尺寸的超导量子干涉仪)被认为是进行灵敏磁测量的有用工具,并且噪声水平低。包含纳米桥结的nanoSQUID通过光刻和聚焦离子束构图进行制造。虽然以前这种自分流的纳米桥结在4.2 K时已显示出磁滞特性,但我们提出了一种提高工作温度以降低器件临界电流的方法。我们报告了一种读出系统的设计,该系统包括实现低噪声读出的所有必要组件,该噪声受到nanoSQUID噪声的限制。它由一个可变温度(5-10 K)的液氦探针,一个线圈系统和一个SQUID前置放大器组成。正交线圈系统能够使平行于nanoSQUID的最高100 mT的颗粒磁化强度和垂直于nanoSQUID的高达28 mT的磁通量偏差来设置工作点。 nanoSQUID实现了0.23 $ muPhi_ {0} / sqrt {rm Hz} $的低白噪声水平,包括0.10 $ muPhi_ {0} / sqrt {rm Hz} $的读出贡献。

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