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颗粒状超导体中的巨型二能级系统

Giant Two-Level Systems in a Granular Superconductor.

作者信息

Kristen M, Voss J N, Wildermuth M, Bilmes A, Lisenfeld J, Rotzinger H, Ustinov A V

机构信息

Institute for Quantum Materials and Technology, Karlsruher Institute of Technology, 76131 Karlsruhe, Germany.

Physikalisches Institut, Karlsruhe Institute of Technology, 76131 Karlsruhe, Germany.

出版信息

Phys Rev Lett. 2024 May 24;132(21):217002. doi: 10.1103/PhysRevLett.132.217002.

Abstract

Disordered thin films are a common choice of material for superconducting, high impedance circuits used in quantum information or particle detector physics. A wide selection of materials with different levels of granularity are available, but, despite low microwave losses being reported for some, the high degree of disorder always implies the presence of intrinsic defects. Prominently, quantum circuits are prone to interact with two-level systems (TLS), typically originating from solid state defects in the dielectric parts of the circuit, like surface oxides or tunneling barriers. We present an experimental investigation of TLS in granular aluminum thin films under applied mechanical strain and electric fields. The analysis reveals a class of strongly coupled TLS having electric dipole moments up to 30  eÅ, an order of magnitude larger than dipole moments commonly reported for solid state defects. Notably, these large dipole moments appear more often in films with a higher resistivity. Our observations shed new light on granular superconductors and may have implications for their usage as a quantum circuit material.

摘要

无序薄膜是用于量子信息或粒子探测器物理中的超导、高阻抗电路的常用材料选择。有多种具有不同粒度水平的材料可供选择,但是,尽管有报道称某些材料的微波损耗较低,但高度无序总是意味着存在固有缺陷。特别是,量子电路容易与两能级系统(TLS)相互作用,这种系统通常源于电路介电部分的固态缺陷,如表面氧化物或隧道势垒。我们展示了在施加机械应变和电场的情况下对颗粒状铝薄膜中的TLS进行的实验研究。分析揭示了一类强耦合TLS,其电偶极矩高达30 eÅ,比通常报道的固态缺陷的偶极矩大一个数量级。值得注意的是,这些大偶极矩在电阻率较高的薄膜中更常出现。我们的观察为颗粒状超导体提供了新的见解,可能对其作为量子电路材料的使用产生影响。

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