在氧化铜超导体中自发突破旋转对称性
J Wu1, A T Bollinger1, X He1,2
1Brookhaven National Laboratory, Upton, New York 11973-5000, USA.
Nature
|July 28, 2017
概括
研究人员在La$_{2-x}$Sr$_{x}$CuO$_{4}$膜中发现了自发的横向电压,揭示了意想不到的平面电子异构. 这种电子阴性破坏了晶体对称性,并与高温超导有关.
科学领域:
- 凝聚物质物理学
- 材料科学
- 超导性
背景情况:
- 铜氧化物中高温超导的起源仍在争论中.
- 在临界温度以上的正常状态显示出异常特征,如低剂量材料中的伪间隙,并在过度剂量材料中偏离巴丁-库珀-施里弗理论.
研究的目的:
- 调查铜氧化物中的异常正常状态.
- 了解单晶La$_{x}$Sr$_{x}$Cu$_{4}$膜的电子传输特性
主要方法:
- 我研究了使用电流的单晶La$_{2-x}$Sr$_{x}$CuO_{4}$膜.
- 测量自发横向电压与电流直角.
- 分析电压对电流,温度,方向和注的依赖性.
主要成果:
- 观察到一个自发的横向电压, 取决于电流, 温度, 注, 和在平面上的方向.
- 当电流方向旋转时,横向电压以sin{\displaystyle sin} 2φ{\displaystyle \sin } 的形式振荡,从而打破了四倍对称.
- 这种异构,称为电子阴性,在临界温度附近达到峰值,并随着兴奋剂的使用而下降.
结论:
- 观察到的现象是电子运输中意想不到的平面异形态的内在表现.
- 电子阴性甚至存在于经过表层限制的四角膜中.
- 这种异质性本质上是电子的,可能与高温超导有关.
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