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Josephson Junction Field-Effect Transistors for Boolean Logic Cryogenic Applications

机译:用于布尔逻辑低温应用的约瑟夫逊结场效应晶体管

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Josephson junction FETs (JJ-FETs) share design similarities with MOSFETs, except for the source/drain contacts being replaced by superconductors. Similarly, the super current due to proximity effect is tunable by the gate voltage. In light of recent advances in novel materials and fabrication techniques, we examine here the feasibility of JJ-FET-based Boolean logic and memory elements for cryogenic computing. Using a 2-D ballistic transport JJ-FET model, we implement circuit-level simulations for JJ-FET logic gates and discuss criteria for realizing signal restoration, as well as fan-out. We show that the JJ-FET is a promising candidate for very low-power, clocked voltage-level dynamic logic at cryogenic temperatures.
机译:约瑟夫森结FET(JJ-FET)与MOSFET具有相似的设计,除了源极/漏极触点被超导体代替。类似地,由于邻近效应而产生的超电流可通过栅极电压进行调节。鉴于新材料和制造技术的最新进展,我们在这里检查基于JJ-FET的布尔逻辑和存储元件进行低温计算的可行性。我们使用二维弹道传输JJ-FET模型,对JJ-FET逻辑门实施电路级仿真,并讨论实现信号恢复以及扇出的标准。我们表明,在低温下,JJ-FET是极低功耗,时钟电压电平动态逻辑的有前途的候选者。

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