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Low-noise and wide-bandwidth current readout at low temperatures using a superconducting-quantum-interference-device amplifier

机译:使用超导量子干扰器件放大器在低温下低噪声和宽带电流读数

摘要

We report on the development of a current amplifier for measuring small currents from mesoscopic electronic devices at low temperatures down to the milli-Kelvin range. In our setup, a superconducting quantum interference device (SQUID) located at the mixing chamber stage of the dilution refrigerator is used as the first-stage current amplifier, thereby improving the noise floor down to 8 ' 10%27A2/Hz, which is one order of magnitude as low as those obtained by the conventional methods that utilize a semiconductor-based cryogenic current amplifier. We show the configuration of this setup and demonstrate the amplification of the current generated by a quantum point contact. This approach can open a new way to examine solid-state phenomena that are elusive owing to their small current.
机译:我们报告了一种电流放大器的开发,该电流放大器可在低温至毫开氏温度范围内测量介观电子设备中的小电流。在我们的设备中,位于稀释冰箱混合室级的超导量子干扰设备(SQUID)被用作第一级电流放大器,从而将本底噪声降低到8'10%27A2 / Hz,这是数量级低至通过使用基于半导体的低温电流放大器的常规方法获得的数量级低。我们展示了此设置的配置,并展示了由量子点接触产生的电流的放大。这种方法可以开辟一种新的方法来检查由于电流小而难以捉摸的固态现象。

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