量子干涉
超导电性
电感
量子
凝聚态物理
电流(流体)
干扰(通信)
临界电流
物理
材料科学
量子力学
计算机科学
电信
电压
频道(广播)
热力学
作者
Hao Li,Jianshe Liu,Yingshan Zhang,Han Cai,Gang Li,Qichun Liu,Siyuan Han,Wei Chen
标识
DOI:10.1088/1361-6668/aa52ef
摘要
A negative-inductance superconducting quantum interference device (nSQUID) is an adiabatic superconducting logic device with high energy efficiency, and therefore a promising building block for large-scale low-power superconducting computing. However, the principle of the nSQUID is not that straightforward and an nSQUID driven by voltage is vulnerable to common mode noise. We investigate a single nSQUID driven by current instead of voltage, and clarify the principle of the adiabatic transition of the current-driven nSQUID between different states. The basic logic operations of the current-driven nSQUID with proper parameters are simulated by WRspice. The corresponding circuit is fabricated with a 100 A cm−2 Nb-based lift-off process, and the experimental results at low temperature confirm the basic logic operations as a gated buffer.
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