论文标题

在微波辐照下的石墨烯 - 渗透环环的相位依赖性耗散和超电流

Phase-dependent dissipation and supercurrent of a graphene-superconductor ring under microwave irradiation

论文作者

Dou, Ziwei, Wakamura, Taro, Virtanen, Pauli, Wu, Nian-Jheng, Deblock, Richard, Autier-Laurent, Sandrine, Watanabe, Kenji, Taniguchi, Takashi, Guéron, Sophie, Bouchiat, Hélène, Ferrier, Meydi

论文摘要

与正常金属宿主Andreev结合状态相连的两个超导体的连接,其能量谱是相位依赖的,并显示了微型PAP,从而产生了周期性的超流量。由于Andreev结合状态的松弛,相位依赖性耗散也以有限的频率出现。虽然先前已经在热平衡附近测量了耗散和超电流与相位,但它们在非平衡中的行为仍然难以捉摸。通过测量微波辐照下石墨烯 - 渗透连接的AC敏感性,我们发现超电流响应与绝热AC Josephson效应的偏离,因为辐照频率大于松弛率。值得注意的是,当辐照频率进一步增加以上时,在小型制品最大,耗散量最小的阶段,耗散会增强。我们认为,这是非平衡分布函数的证据,该函数允许在小型PAP的同一侧进行其他水平过渡。这些结果表明,相位依赖性耗散对微波辐射更敏感,并提出了一种研究在接近超导系统中研究光子辅助物理学的新方法。

A junction with two superconductors coupled by a normal metal hosts Andreev bound states whose energy spectrum is phase-dependent and exhibits a minigap, resulting in a periodic supercurrent. Phase-dependent dissipation also appears at finite frequency due to relaxation of Andreev bound states. While dissipation and supercurrent versus phase have previously been measured near thermal equilibrium, their behavior in nonequilibrium is still elusive. By measuring the ac susceptibility of a graphene-superconductor junction under microwave irradiation, we find supercurrent response deviates from adiabatic ac Josephson effect as irradiation frequency is larger than relaxation rate. Notably, when irradiation frequency further increases above the minigap, the dissipation is enhanced at phase 0 where the minigap is largest and dissipation is minimum in equilibrium. We argue that this is evidence of the nonequilibrium distribution function which allows additional level transitions on the same side of the minigap. These results reveal that phase-dependent dissipation is more sensitive than supercurrent to microwave irradiation, and suggest a new method to investigate photon-assisted physics in proximitized superconducting system.

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