...
首页> 外文期刊>New journal of physics >Incoherent superconductivity well above in high- cuprates—harmonizing the spectroscopic and thermodynamic data
【24h】

Incoherent superconductivity well above in high- cuprates—harmonizing the spectroscopic and thermodynamic data

机译:高铜酸盐中的非相干超导性远高于该值—协调了光谱和热力学数据

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Download video Transcript View all New J. Phys. video abstracts Cuprate superconductors have long been known to exhibit an energy gap that persists high above the superconducting transition temperature (). Debate has continued now for decades as to whether it is a precursor superconducting gap or a pseudogap arising from some competing correlation. Failure to resolve this has arguably delayed explaining the origins of superconductivity in these highly complex materials. Here we effectively settle the question by calculating a variety of thermodynamic and spectroscopic properties, exploring the effect of a temperature-dependent pair-breaking term in the self-energy in the presence of pairing interactions that persist well above . We start by fitting the detailed temperature-dependence of the electronic specific heat and immediately can explain its hitherto puzzling field dependence. Taking this same combination of pairing temperature and pair-breaking scattering we are then able to simultaneously describe in detail the unusual temperature and field dependence of the superfluid density, tunneling, Raman and optical spectra, which otherwise defy explanation in terms a superconducting gap that closes conventionally at . These findings demonstrate that the gap above in the overdoped regime likely originates from incoherent superconducting correlations, and is distinct from the competing-order 'pseudogap' that appears at lower doping.
机译:下载视频抄本查看全部New J. Phys。视频摘要长期以来,铜酸盐超导体表现出的能隙在超导转变温度()之上仍然很高。关于它是前体超导间隙还是某种竞争相关性引起的假间隙,辩论已持续数十年。不能解决这个问题可以说延迟了解释这些高度复杂的材料中超导性的起源。在这里,我们通过计算各种热力学和光谱性质有效地解决了这个问题,并探索了存在依赖关系的温度依赖性成对断裂项在自生能量中的影响。我们从拟合电子比热的详细温度依赖性开始,并立即可以解释其迄今令人困惑的场依赖性。结合配对温度和配对断裂散射的相同组合,我们便能够同时详细描述超流体密度,隧穿,拉曼光谱和光谱对温度和场的不寻常依赖性,否则就无法解释闭合的超导间隙通常在。这些发现表明,在超掺杂体系中的上述缺口可能源自超相干的非相干相关性,并且与低掺杂时出现的竞争级“伪”有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号