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玻色玻璃和费米玻璃。

Bose glass and Fermi glass.

作者信息

Takahashi Korekiyo, Nakatsugawa Keiji, Sakoda Masahito, Nanao Yoshiko, Nobukane Hiroyoshi, Obuse Hideaki, Tanda Satoshi

机构信息

Department of Applied Physics, Hokkaido University, Sapporo, 060-8628, Japan.

Center of Education and Research for Topological Science and Technology, Hokkaido University, Sapporo, 060-8628, Japan.

出版信息

Sci Rep. 2023 Aug 1;13(1):12434. doi: 10.1038/s41598-023-39285-1.

Abstract

It is known that two-dimensional superconducting materials undergo a quantum phase transition from a localized state to superconductivity. When the disordered samples are cooled, bosons (Cooper pairs) are generated from Fermi glass and reach superconductivity through Bose glass. However, there has been no universal expression representing the transition from Fermi glass to Bose glass. Here, we discovered an experimental renormalization group flow from Fermi glass to Bose glass in terms of simple [Formula: see text]-function analysis. To discuss the universality of this flow, we analyzed manifestly different systems, namely a Nd-based two-dimensional layered perovskite and an ultrathin Pb film. We find that all our experimental data for Fermi glass fall beautifully into the conventional self-consistent [Formula: see text]-function. Surprisingly, however, flows perpendicular to the conventional [Formula: see text]-function are observed in the weakly localized regime of both systems, where localization becomes even weaker. Consequently, we propose a universal transition from Bose glass to Fermi glass with the new two-dimensional critical sheet resistance close to [Formula: see text].

摘要

已知二维超导材料会经历从局域态到超导性的量子相变。当无序样品被冷却时,玻色子(库珀对)从费米玻璃中产生,并通过玻色玻璃达到超导性。然而,尚未有表示从费米玻璃到玻色玻璃转变的通用表达式。在此,我们通过简单的[公式:见正文]函数分析发现了从费米玻璃到玻色玻璃的实验重整化群流。为了讨论这种流的普遍性,我们分析了明显不同的系统,即基于钕的二维层状钙钛矿和超薄铅膜。我们发现,我们所有关于费米玻璃的实验数据都完美地符合传统的自洽[公式:见正文]函数。然而,令人惊讶的是,在这两个系统的弱局域区域都观察到了垂直于传统[公式:见正文]函数的流,在该区域局域化变得更弱。因此,我们提出了一种从玻色玻璃到费米玻璃的通用转变,新的二维临界薄层电阻接近[公式:见正文]。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73cd/10394042/76d8c55ed02e/41598_2023_39285_Fig1_HTML.jpg

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