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利用耗散耦合恢复 NbSe 量子金属相中的超导性。

Restoring Superconductivity in the Quantum Metal Phase of NbSe Using Dissipative Coupling.

机构信息

Department of Physics , Indian Institute of Science , Bengaluru 560012 , India.

出版信息

Nano Lett. 2019 Mar 13;19(3):1625-1631. doi: 10.1021/acs.nanolett.8b04538. Epub 2019 Feb 14.

Abstract

Localization arguments forbid the appearance of a metallic ground state in two dimensions. Yet, a large variety of disordered superconductors are known to manifest an anomalous metal phase in the zero temperature limit. While previous observations were confined to noncrystalline "dirty" superconductors, the recent observation of the so-called Bose metal phase in crystalline thin flakes of NbSe has sparked off intense debate. While the exact nature of this phase remains unknown, it is thought that quantum fluctuations play a decisive role in Bose metal physics. In this work, we study the response of the anomalous metal phase in thin flakes of NbSe to dissipative coupling. We evince a dramatic quenching of the Bose metal phase when dissipative coupling is strong, fully restoring a zero resistance superconducting state in the entire region of the magnetic field (H)-temperature (T) phase diagram where the Bose metal phase is otherwise observed. The suppression of the Bose metal phase by dissipative coupling is possible only in a quantum system where dissipation can directly affect system thermodynamics. Our observation of a dissipative phase transition in two-dimensional NbSe firmly establishes the quantum nature of the anomalous metal phase in this class of "clean" superconductors.

摘要

局域化论点禁止二维金属基态的出现。然而,人们已经知道,大量无序超导体在零温度极限下表现出异常金属相。虽然以前的观察仅限于非晶“不洁”超导体,但最近在 NbSe 的晶体薄片中观察到所谓的玻色金属相引起了激烈的争论。尽管这种相的确切性质尚不清楚,但人们认为量子涨落在玻色金属物理中起着决定性的作用。在这项工作中,我们研究了 NbSe 薄片中异常金属相对耗散耦合的响应。我们发现,当耗散耦合很强时,玻色金属相急剧猝灭,在整个磁场 (H)-温度 (T) 相图区域中完全恢复零电阻超导状态,而在玻色金属相 otherwise observed 区域中,这种相被抑制。只有在耗散可以直接影响系统热力学的量子系统中,耗散耦合才能抑制玻色金属相。我们在二维 NbSe 中观察到耗散相变,这一观察结果确立了这类“清洁”超导体中异常金属相的量子性质。

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