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超导汞基高温超导薄膜,其零电阻转变温度为 124 开尔文。

Superconducting mercury-based cuprate films with a zero-resistance transition temperature of 124 Kelvin.

出版信息

Science. 1994 Mar 4;263(5151):1259-61. doi: 10.1126/science.263.5151.1259.

Abstract

The synthesis of high-quality films of the recently discovered mercury-based cuprate films with high transition temperatures has been plagued by problems such as the air sensitivity of the cuprate precursor and the volatility of Hg and HgO. These processing difficulties have been circumvented by a technique of atomic-scale mixing of the HgO and cuprate precursors, use of a protective cap layer, and annealing in an appropriate Hg and O(2) environment. With this procedure, a zero-resistance transition temperature as high as 124 kelvin in c axis-oriented epitaxial HgBa(2)CaCu(2)O(6+delta) films has been achieved.

摘要

高转变温度的新型汞基铜酸盐高温超导薄膜的高质量合成一直以来都受到诸多问题的困扰,如铜酸盐前体对空气敏感以及汞和氧化汞的挥发性等。通过采用原子级混合汞和铜酸盐前体、使用保护帽层以及在合适的汞和氧气环境中退火等技术,可以克服这些加工难点。采用该方法,在 c 轴取向的外延 HgBa(2)CaCu(2)O(6+δ) 薄膜中实现了高达 124 开尔文的零电阻转变温度。

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