论文标题

Charge-4E和Charge-6E通量量化以及kagome超导环设备中较高的电荷超导率

Charge-4e and charge-6e flux quantization and higher charge superconductivity in kagome superconductor ring devices

论文作者

Ge, Jun, Wang, Pinyuan, Xing, Ying, Yin, Qiangwei, Wang, Anqi, Shen, Jie, Lei, Hechang, Wang, Ziqiang, Wang, Jian

论文摘要

通量量化是超导体中电子配对的关键指示。例如,众所周知的H/2E通量量化被认为是充电2E,两电子库珀对的有力证据。在这里,我们报告了使用过渡金属kagome超导体CSV3SB5制造的介观量量化量量化的证据。我们执行系统的磁通量测量,并观察到H/4E和H/6E单位中磁通量的前所未有的量化。具体而言,在低温下,如Chard-2E超导性的通量量化所预期的那样,检测到具有H/2E周期的磁性振荡。我们发现,当温度升高时,H/2E的振荡被H/4E周期性抑制并取代。升高温度进一步抑制了H/4E的振荡,并以H/6E周期性出现了稳健的抗性振荡,作为电荷6E通量量化的证据。我们的观察结果提供了第一个实验证据,证明了多电量通量量子和新兴的量子问题,在Charge-2E-2E Cooper对凝结物上方强烈波动的区域中表现出高电荷超导性,从而揭示了对kagome超导电器中相互交织的和遗传性电子顺序的新见解。

The flux quantization is a key indication of electron pairing in superconductors. For example, the well-known h/2e flux quantization is considered strong evidence for the existence of the charge-2e, two-electron Cooper pairs. Here we report evidence for multi-charge flux quantization in mesoscopic ring devices fabricated using the transition-metal kagome superconductor CsV3Sb5. We perform systematic magneto-transport measurements and observe unprecedented quantization of magnetic flux in units of h/4e and h/6e in magnetoresistance oscillations. Specifically, at low temperatures, magnetoresistance oscillations with period h/2e are detected, as expected from the flux quantization for charge-2e superconductivity. We find that the h/2e oscillations are suppressed and replaced by resistance oscillations with h/4e periodicity when temperature is increased. Increasing the temperature further suppresses the h/4e oscillations and robust resistance oscillations with h/6e periodicity emerge as evidence for charge-6e flux quantization. Our observations provide the first experimental evidence for the existence of multi-charge flux quanta and emergent quantum matter exhibiting higher-charge superconductivity in the strongly fluctuating region above the charge-2e Cooper pair condensate, revealing new insights into the intertwined and vestigial electronic order in kagome superconductors.

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