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Current amplifier and flux-buffer designs using an exponential flux shuttle with a Josephson junction synthetic inductor

机译:使用带有约瑟夫森结合成电感器的指数通量梭的电流放大器和通量缓冲设计

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A current amplifier design based on the principle of fluxon propagation in a multijunction exponential flux shuttle has been investigated. In this design, the critical current of the junctions is increased exponentially and the SQUID (superconducting quantum interference device) inductance is a Josephson-junction equivalent inductance. Current gain can be achieved by generating fluxons at the low end and dissipating them at the high end where the load is located. Advantages over other types of linear devices are discussed. Two parallel exponential flux shuttles can be used to duplicate flux from a high-inductance input coil to a low-inductance output. The device performance of the two circuits is evaluated by computer simulation, and noise performance is discussed.
机译:研究了基于通量在多结指数通量梭中传播的原理的电流放大器。在此设计中,结的临界电流呈指数增加,SQUID(超导量子干涉器件)电感为约瑟夫森结等效电感。可以通过在负载的低端产生磁通并在高端将其耗散来获得电流增益。讨论了相对于其他类型的线性设备的优势。可以使用两个平行的指数磁通线来将磁通从高电感输入线圈复制到低电感输出。通过计算机仿真评估了这两个电路的器件性能,并讨论了噪声性能。

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