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Performances of a flux-flow-type Josephson amplifier

机译:磁通流量型约瑟夫森放大器的性能

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The authors have been developing an analog amplifier utilizing a flux flow phenomena in a Josephson line, i.e. the flux-flow-type Josephson amplifier (FFA). The FFA converts a signal current I/sub s/ to a voltage V/sub dc/ across the Josephson line, and the I/sub s/-V/sub dc/ characteristic determines the performance of the FFA, e.g. the gain and saturation level. Studies have been made to improve the I/sub s/-V/sub dc/ relation. It is shown that the transresistance can be improved significantly by reducing the width of the Josephson line and increasing the kinetic inductance of the line. The kinetic inductance can be increased by thinning the line electrode and by using an electrode with large London penetration depth, such as NbN. The transresistance obtained is as large as 6.8 Omega for NbN/Pb-alloy Josephson lines with a thickness of 5 nm and a width of 4 mu m. It is also shown that the linear operating range of the amplifier is as large as 1 mV.
机译:作者一直在开发一种利用约瑟夫森线中的通量流动现象的模拟放大器,即通量流型约瑟夫森放大器(FFA)。 FFA将约瑟夫森线上的信号电流I / sub s /转换为电压V / sub dc /,并且I / sub s / -V / sub dc /特性决定了FFA的性能,例如增益和饱和度水平。已经进行了改善I / sub s / -V / sub dc /关系的研究。结果表明,通过减小约瑟夫森线的宽度并增加线的动感,可以显着改善跨阻。可以通过使线电极变薄以及使用伦敦穿透深度较大的电极(例如NbN)来增加动电感。对于NbN / Pb合金Josephson线,厚度为5 nm,宽度为4μm,获得的跨阻高达6.8Ω。还显示出放大器的线性工作范围高达1 mV。

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