物理学进展 ›› 2018, Vol. 38 ›› Issue (5): 200-218.

• • 上一篇    

铜氧化物超导体Bi2Sr2CaCu2O8+δ 多体相互作用的超高能量分辨和时间分辨 角分辨光电子能谱研究

周超成,张文涛   

  • 发布日期:2020-10-12

Study on the many-body effects of the cuprate superconductor Bi2Sr2CaCu2O8+ by ultrahigh resolution angle-resolved photoemission and time- and angle-resolved

Zhou Chao-Cheng, Zhang Wen-Tao   

  • Published:2020-10-12

摘要: 自发现30 多年来,铜氧化物的高温超导机理仍未得到解释。传统超导电性起源于电 子–声子相互作用形成的电子配对,研究传统超导体中的多体相互作用为BCS 理论提供了有 力的证据。目前已证实铜氧化物高温超导体中存在着电子配对,但是引起配对的机制仍不清 楚。因此,对铜氧化物高温超导体中的多体相互作用研究是揭示高温超导机理的关键。角分辨 光电子能谱是研究固体电子结构最直接的技术手段,随着其分辨率的不断提升,在研究高温超 导体的多体相互作用中日益发挥重要的作用。近年来兴起的时间分辨角分辨光电子能谱在常规 角分辨光电子能谱的基础上增加了独特的时间维度,从而成为研究多体相互作用动力学的有力 手段。本文详细地介绍了我们利用超高能量分辨和时间分辨角分辨光电子能谱在铜氧化物超导 体Bi2Sr2CaCu2O8+δ 中多体相互作用的研究,包括在节点区域、反节点区域扭折的研究,多体 相互作用的动量依赖关系,配对电子自能的提取以及库珀对在激光泵浦下的受激辐射现象。

关键词: 铜氧化物超导体;角分辨光电子能谱;时间分辨;多体相互作用

Abstract: The mechanism of high-temperature superconductivity in copper-oxide compounds (cuprates) is still unknown since its discovery thirty years ago. The conventional superconductivity originates from the coherent movement of Cooper pairs, in which the two interacted electrons are mediated by lattice vibrations (phonons), and the studies of many-body effects have provided direct evidence for the success of BCS theory. Electron pairing has been well established in cuprate superconductors, but the mechanism of the pairing remains unclear. Similar to that in conventional superconductors, the study of many-body effects in cuprate high-temperature superconductor is important in revealing the pairing mechanism of high-temperature superconductivity. With a great improvement of instrumental resolutions, angle-resolved photoemission spectroscopy (ARPES) plays an important role in probing the many-body effects. In recent years, the time- and angle-resolved photoemission spectroscopy (trARPES) which added a unique time dimension to the conventional ARPES, has become a powerful tool in studying many-body effects dynamics. Here, we summary our past study on the many-body effects in the cuprate superconductor Bi2Sr2CaCu2O8+ using trARPES and ultra-high resolution ARPES, including the momentum dependence of many-body effects, the extraction of pairing self-energy, and the stimulated emission of bosons.

Key words: cuprate; photoemission; time-resolved; many-body effect