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LaSrCuO 中具有移动超导涡旋的增强电荷密度波。

Enhanced charge density wave with mobile superconducting vortices in LaSrCuO.

机构信息

Stanford Institute for Materials and Energy Sciences, SLAC National Accelerator Laboratory, 2575 Sand Hill Road, Menlo Park, CA, 94025, USA.

Department of Materials Science and Engineering, Stanford University, Stanford, CA, 94305, USA.

出版信息

Nat Commun. 2023 Feb 9;14(1):733. doi: 10.1038/s41467-023-36203-x.

Abstract

Superconductivity in the cuprates is found to be intertwined with charge and spin density waves. Determining the interactions between the different types of order is crucial for understanding these important materials. Here, we elucidate the role of the charge density wave (CDW) in the prototypical cuprate LaSrCuO, by studying the effects of large magnetic fields (H) up to 24 Tesla. At low temperatures (T), the observed CDW peaks reveal two distinct regions in the material: a majority phase with short-range CDW coexisting with superconductivity, and a minority phase with longer-range CDW coexisting with static spin density wave (SDW). With increasing magnetic field, the CDW first grows smoothly in a manner similar to the SDW. However, at high fields we discover a sudden increase in the CDW amplitude upon entering the vortex-liquid state. Our results signify strong coupling of the CDW to mobile superconducting vortices and link enhanced CDW amplitude with local superconducting pairing across the H - T phase diagram.

摘要

在铜酸盐中超导性与电荷和自旋密度波交织在一起。确定不同类型的有序之间的相互作用对于理解这些重要材料至关重要。在这里,我们通过研究高达 24 特斯拉的大磁场 (H) 的影响,阐明了原型铜酸盐 LaSrCuO 中电荷密度波 (CDW) 的作用。在低温 (T) 下,观察到的 CDW 峰揭示了材料中的两个不同区域:一个是具有短程 CDW 与超导共存的主要相,另一个是具有长程 CDW 与静态自旋密度波 (SDW) 共存的次要相。随着磁场的增加,CDW 首先以类似于 SDW 的方式平滑增长。然而,在高场中,我们发现当进入涡旋液体状态时,CDW 的幅度突然增加。我们的结果表明 CDW 与可移动超导涡旋的强耦合,并将增强的 CDW 幅度与整个 H-T 相图上的局部超导配对联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a52/9911724/24ea9085ef9b/41467_2023_36203_Fig1_HTML.jpg

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