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Two dimensional superconducting quantum interference filters

机译:二维超导量子干涉滤波器

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摘要

We have successfully developed a novel superconducting quantum interferometer based on Josephson junction networks with unconventional loop size distribution. For distinct theoretically determined distributions, the magnetic field B dependent dc voltage V(B) of the interferometer possesses a unique delta-peak like characteristics around B=0. Such devices are called Superconducting Quantum Interference Filters (SQIFs). The unique voltage response of SQIFs allows novel applications, e.g., absolute magnetic field sensors, high speed logical switches and non hysteretic low noise amplifiers which can be directly connected to standard room temperature electronics. In this paper we present new experimental and theoretical results on high performance two dimensional Superconducting Quantum Interference Filters (2D SQIFs). Such 2D SQIFs can be used as absolute magnetic field sensors. Our results indicate that due to the scaling behavior of the flux to voltage transfer function and the scaling of the white output noise, a highly sensitive absolute field sensor based on 2D SQIFs can be very small in size.
机译:我们已经成功地开发了一种基于约瑟夫森结网络且具有非常规回路尺寸分布的新型超导量子干涉仪。对于不同的理论确定的分布,干涉仪的磁场B依赖于直流电压V(B)在B = 0附近具有独特的类似三角峰的特性。这种设备称为超导量子干扰滤波器(SQIF)。 SQIF的独特电压响应可实现新颖的应用,例如绝对磁场传感器,高速逻辑开关和可直接连接至标准室温电子设备的非滞后低噪声放大器。在本文中,我们介绍了有关高性能二维超导量子干涉滤波器(2D SQIF)的新实验和理论结果。这样的2D SQIF可用作绝对磁场传感器。我们的结果表明,由于磁通对电压传递函数的缩放行为以及白色输出噪声的缩放,基于2D SQIF的高灵敏度绝对场传感器的尺寸可能非常小。

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