角分辨光电子能谱
准粒子
铜酸盐
超导电性
物理
凝聚态物理
配对
库珀对
声子
光电发射光谱学
电子结构
谱线
量子力学
作者
S. Ideta,Steven Johnston,T. Yoshida,Kiyohisa Tanaka,Michiyasu Mori,H. Anzai,A. Ino,Masashi Arita,H. Namatame,M. Taniguchi,Shigeyuki Ishida,Ken Takashima,K. Kojima,T. P. Devereaux,S. Uchida,A. Fujimori
标识
DOI:10.1103/physrevlett.127.217004
摘要
Hybridization of Bogoliubov quasiparticles (BQPs) between the CuO_{2} layers in the triple-layer cuprate high-temperature superconductor Bi_{2}Sr_{2}Cu_{2}Cu_{3}O_{10+δ} is studied by angle-resolved photoemission spectroscopy (ARPES). In the superconducting state, an anticrossing gap opens between the outer- and inner-BQP bands, which we attribute primarily to interlayer single-particle hopping with possible contributions from interlayer Cooper pairing. We find that the d-wave superconducting gap of both BQP bands smoothly develops with momentum without an abrupt jump in contrast to a previous ARPES study. Hybridization between the BQPs also gradually increases in going from the off nodal to the antinodal region, which is explained by the momentum dependence of the interlayer single-particle hopping. As possible mechanisms for the enhancement of the superconducting transition temperature, the hybridization between the BQPs as well as the combination of phonon modes of the triple CuO_{2} layers and spin fluctuations represented by a four-well model are discussed.
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