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An unusual isotope effect in a high-transition-temperature superconductor

机译:高转变温度超导体中的异常同位素效应

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In conventional superconductors, the electron pairing that allows superconductivity is caused by exchange of virtual phonons, which are quanta of lattice vibration. For high-transition-temperature (high-T_c) superconductors, it is far from clear that phonons are involved in the pairing at all. For example, the negligible change in T_c of optimally doped Bi_2Sr_2CaCu_2O_(8+ δ) (Bi2212; ref. 1) upon oxygen isotope substitution (~(16)O → ~(18)O leads to T_c decreasing from 92 to 91 K) has often been taken to mean that phonons play an insignificant role in this material. Here we provide a detailed comparison of the electron dynamics of Bi2212 samples containing different oxygen isotopes, using angle-resolved photoemission spectroscopy. Our data show definite and strong isotope effects. Surprisingly, the effects mainly appear in broad high-energy humps, commonly referred to as 'incoherent peaks'. As a function of temperature and electron momentum, the magnitude of the isotope effect closely correlates with the superconducting gap ― that is, the pair binding energy. We suggest that these results can be explained in a dynamic spin-Peierls picture, where the singlet pairing of electrons and the electron-lattice coupling mutually enhance each other.
机译:在常规的超导体中,允许超导的电子对是由虚拟声子的交换引起的,虚拟声子是晶格振动的量子。对于高转变温度(high-T_c)超导体,尚不清楚声子完全参与配对。例如,氧同位素取代后(〜(16)O→〜(18)O),最佳掺杂的Bi_2Sr_2CaCu_2O_(8+δ)(Bi2212; ref.1)的T_c的变化可忽略不计,导致T_c从92 K降至91 K通常被认为是声子在这种材料中起着微不足道的作用。在这里,我们提供了使用角度分辨光发射光谱法比较包含不同氧同位素的Bi2212样品的电子动力学的详细比较。我们的数据显示出一定的同位素效应。出人意料的是,这种影响主要出现在宽泛的高能峰中,通常称为“不相干峰”。作为温度和电子动量的函数,同位素效应的大小与超导间隙(即对结合能)密切相关。我们建议可以在动态自旋Peierls图片中解释这些结果,其中电子的单重态配对和电子-晶格耦合相互增强。

著录项

  • 来源
    《Nature》 |2004年第6996期|p.187-190|共4页
  • 作者单位

    Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

  • 入库时间 2022-08-18 02:57:04

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