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单层铜-氧面中的高温超导性。

High-temperature superconductivity in a single copper-oxygen plane.

机构信息

Brookhaven National Laboratory, Upton, NY 11973, USA.

出版信息

Science. 2009 Oct 30;326(5953):699-702. doi: 10.1126/science.1178863.

Abstract

The question of how thin cuprate layers can be while still retaining high-temperature superconductivity (HTS) has been challenging to address, in part because experimental studies require the synthesis of near-perfect ultrathin HTS layers and ways to profile the superconducting properties such as the critical temperature and the superfluid density across interfaces with atomic resolution. We used atomic-layer molecular beam epitaxy to synthesize bilayers of a cuprate metal (La(1.65)Sr(0.45)CuO4) and a cuprate insulator (La2CuO4) in which each layer is just three unit cells thick. We selectively doped layers with isovalent Zn atoms, which suppress superconductivity and act as markers, to show that this interface HTS occurs within a single CuO2 plane. This approach may also be useful in fabricating HTS devices.

摘要

超薄铜酸盐层在保持高温超导(HTS)方面的问题一直具有挑战性,部分原因是实验研究需要合成近乎完美的超薄 HTS 层,以及能够以原子分辨率描绘超导性质(如临界温度和超流密度)的方法。我们使用原子层分子束外延技术合成了双层铜酸盐金属(La(1.65)Sr(0.45)CuO4)和铜酸盐绝缘体(La2CuO4),其中每个层只有三个单元厚。我们选择用等电子 Zn 原子掺杂层,这些 Zn 原子会抑制超导性并作为标记,以表明这种界面 HTS 发生在单个 CuO2 平面内。这种方法在制造 HTS 器件方面也可能很有用。

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