State Key Laboratory of Low Dimensional Quantum Physics, Department of Physics, Tsinghua University, Beijing 100084, China.
Frontier Science Center for Quantum Information, Beijing 100084, China.
Phys Rev Lett. 2023 May 26;130(21):216004. doi: 10.1103/PhysRevLett.130.216004.
There has been a long-standing debate about the mechanism of the unusual superconductivity in alkali-intercalated fullerides. In this Letter, using high-resolution angle-resolved photoemission spectroscopy, we systematically investigate the electronic structures of superconducting K_{3}C_{60} thin films. We observe a dispersive energy band crossing the Fermi level with the occupied bandwidth of about 130 meV. The measured band structure shows prominent quasiparticle kinks and a replica band involving the Jahn-Teller active phonon modes, which reflects strong electron-phonon coupling in the system. The electron-phonon coupling constant is estimated to be about 1.2, which dominates the quasiparticle mass renormalization. Moreover, we observe an isotropic nodeless superconducting gap beyond the mean-field estimation (2Δ/k_{B}T_{c}≈5). Both the large electron-phonon coupling constant and large reduced superconducting gap suggest a strong-coupling superconductivity in K_{3}C_{60}, while the electronic correlation effect is suggested by the observation of a waterfall-like band dispersion and the small bandwidth compared with the effective Coulomb interaction. Our results not only directly visualize the crucial band structure but also provide important insights into the mechanism of the unusual superconductivity of fulleride compounds.
对于碱金属嵌入富勒烯中超导性的奇特机制,一直存在着长期的争论。在这封信件中,我们使用高分辨率角分辨光电子能谱,系统地研究了超导 K_{3}C_{60} 薄膜的电子结构。我们观察到一个在费米能级处有弥散能带交叉的现象,其占据带宽约为 130 meV。所测量的能带结构显示出显著的准粒子扭折和涉及 Jahn-Teller 活性声子模式的复制能带,这反映了系统中强烈的电子-声子耦合。电子-声子耦合常数估计约为 1.2,这主导了准粒子质量重整化。此外,我们观察到一个各向同性的无节点超导能隙,超出了平均场估计(2Δ/k_{B}T_{c}≈5)。大的电子-声子耦合常数和大的超导能隙减小表明 K_{3}C_{60} 中存在强耦合超导性,而电子相关效应则由观察到的瀑布状能带色散和与有效库仑相互作用相比带宽较小来证实。我们的结果不仅直接可视化了关键能带结构,而且为富勒烯化合物中超导性的奇特机制提供了重要的见解。