Hybridization of Bogoliubov-quasiparticles between adjacent CuO$_2$ layers in the triple-layer cuprate Bi$_2$Sr$_2$Ca$_2$Cu$_3$O$_{10+\delta}$ studied by ARPES.

  title={Hybridization of Bogoliubov-quasiparticles between adjacent CuO\$\_2\$ layers in the triple-layer cuprate Bi\$\_2\$Sr\$\_2\$Ca\$\_2\$Cu\$\_3\$O\$\_\{10+\delta\}\$ studied by ARPES.},
  author={Shinichiro Ideta and Steven Johnston and T. M Yoshida and K. Tanaka and M. Mori and Hiroaki Anzai and A. Ino and Masashi Arita and Hirofumi Namatame and Masaki Taniguchi and Shigeyuki Ishida and K. Takashima and Kenji M. Kojima and T. P. Devereaux and Shin-ichi Uchida and Atsushi Fujimori},
  journal={arXiv: Superconductivity},
Hybridization of Bogoliubov quasiparticles (BQPs) between the CuO$_2$ layers in the triple-layer cuprate high-temperature superconductor Bi$_2$Sr$_2$Ca$_2$Cu$_3$O$_{10+\delta}$ is studied by angle-resolved photoemission spectroscopy (ARPES). In the superconducting state, an anti-crossing 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… 


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See Supplemental Materials at URL for details of the theoretical simulation of ARPES spectra and the calculation of ∆t ⊥
    Tc estimation for the four-well model as outlined in the text. SF, Br, Ac, and B1g indicate the spin fluctuation, in-plane half-breathing, acoustic, and c-axis buckling phonon modes