论文标题
闸门和通量控制的超电流二极管
A gate- and flux-controlled supercurrent diode
论文作者
论文摘要
在过去几年中,超电流二极管(SDS)极化增长的兴趣在超导电子中的潜在应用(SCE)中的非转向电荷转运。到目前为止,已经在复杂的杂种超导体/半导体结构或受中度磁场的金属系统中报道了SD效应,从而显示出对SCE实际应用的潜力有限。在这里,我们通过利用基于Dayem桥的超导量子干扰装置(Squid)来报告整体SD的设计和实现。我们的结构允许达到大约6%的纠正效率($η$)。此外,可以通过调制外部磁通量或门电压来选择$η$的绝对值和极性,从而确保高通用性和提高的开关速度。此外,我们的SD在广泛的温度下运行,可达钛膜的超导临界温度的70%,该温度构成干涉仪。我们的SD可以通过与广泛的超导技术协同作用(例如纳米晶体,快速的单通量量子(RSFQ)和记忆)来找到SCE的扩展应用。
Non-reciprocal charge transport in supercurrent diodes (SDs) polarized growing interest in the last few years for its potential applications in superconducting electronics (SCE). So far, SD effects have been reported in complex hybrid superconductor/semiconductor structures or metallic systems subject to moderate magnetic fields, thus showing a limited potentiality for practical applications in SCE. Here, we report the design and the realization of a monolithic SD by exploiting a Dayem bridge-based superconducting quantum interference device (SQUID). Our structure allows reaching rectification efficiencies ($η$) up to about 6%. Moreover, the absolute value and the polarity of $η$ can be selected on demand by the modulation of an external magnetic flux or by a gate voltage, thereby guaranteeing high versatility and improved switching speed. Furthermore, our SD operates in a wide range of temperatures up to about the 70% of the superconducting critical temperature of the titanium film composing the interferometer. Our SD can find extended applications in SCE by operating in synergy with widespread superconducting technologies, such as nanocryotrons, rapid single flux quanta (RSFQs) and memories.