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An adiabatic quantum flux parametron as an ultra-low-power logic device

机译:绝热量子通量准将器作为超低功耗逻辑器件

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Ultra-low-power adiabatic quantum flux parametron (QFP) logic is investigated since it has the potential to reduce the bit energy per operation to the order of the thermal energy. In this approach, nonhysteretic QFPs are operated slowly to prevent nonadiabatic energy dissipation occurring during switching events. The designed adiabatic QFP gate is estimated to have a dynamic energy dissipation of 12% of I_cφ_0 for a rise/fall time of 1000 ps. It can be further reduced by reducing circuit inductances. Three stages of adiabatic QFP NOT gates were fabricated using a Nb Josephson integrated circuit process and their correct operation was confirmed.
机译:研究了超低功率绝热量子通量参量(QFP)逻辑,因为它具有将每次操作的位能量降低到热能数量级的潜力。在这种方法中,非迟滞QFP必须缓慢运行,以防止在开关事件期间发生非绝热能量耗散。在1000 ps的上升/下降时间内,估计设计的绝热QFP门的动态能量耗散为I_cφ_0的12%。可以通过减小电路电感来进一步减小它。使用Nb Josephson集成电路工艺制造了三个阶段的绝热QFP NOT门,并确认了它们的正确操作。

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