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Anisotropic evolution of energy gap in Bi2212 superconductor 被引量:1

Anisotropic evolution of energy gap in Bi2212 superconductor
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摘要 We present a systematic analysis of the energy gap in underdoped Bi2212 superconductor as a function of temperature and hole doping level. Within the framework of the theoretical model containing the electron-phonon and electron-electron-phonon pairing mechanism, we reproduced the measurement results of modern ARPES experiments with very high accuracy. We showed that the energy-gap am- plitude is very weakly dependent on the temperature but clearly dependent on the level of doping. The evidence for a non-zero energy gap above the critical temperature, referred to as a pseudogap, was also obtained. We present a systematic analysis of the energy gap in underdoped Bi2212 superconductor as a function of temperature and hole doping level. Within the framework of the theoretical model containing the electron-phonon and electron-electron-phonon pairing mechanism, we reproduced the measurement results of modern ARPES experiments with very high accuracy. We showed that the energy-gap am- plitude is very weakly dependent on the temperature but clearly dependent on the level of doping. The evidence for a non-zero energy gap above the critical temperature, referred to as a pseudogap, was also obtained.
机构地区 Institute of Physics
出处 《Frontiers of physics》 SCIE CSCD 2016年第5期91-96,共6页 物理学前沿(英文版)
关键词 high-temperature superconductors ANISOTROPY energy gap Bi2212 high-temperature superconductors, anisotropy, energy gap, Bi2212
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  • 1Q. J. Chen, J. Stajic, S. N. Tan, and K. Levin, BCS-BEC crossover: From high temperature superconductors to ultra- cold superfluids, Phys. Rep., 2005, 412(1): 1.
  • 2I. Bloch. J. Dalibard, and W. Zwerger, Many-body physics with ultracold gases, Rev. Mod. Phys., 2008, 80:885.
  • 3J. M. Maldacena, The large N limit of superconformal field theories and supergravity, Adv. Theor. Math. Phys., 1998, 2: 231.
  • 4J. M. Maldacena, The large N limit of superconformal field theories and supergravity, Adv. Theor. Math. Phys., arXiv: hep-th/9711200v3.
  • 5E. Witten, Anti De Sitter space and holography, Adv. Theor. Math. Phys., 1998, 2:253.
  • 6O. Aharony, S. S. Gubser, J. Maldacena, H. Ooguri, and Y. Oz, Large N field theories, string theory and gravity, Phys. Rep., 2000, 323(3 4): 183.
  • 7M. Cubrovic, J. Zaanen, and K. Schalm, String theory, quan- tum phase transitions, and the emergent Fermi liquid, Sci- ence, 2009, 325(5939): 439.
  • 8T. Timusk and B. Statt, The pseudogap in high-temperature superconductors: An experimental survey, Rep. Prog. Phys.,1999, 62(1): 61.
  • 9J. R. Schrieffer, Theory of Supercondutivity, 3rd Ed., Perseus Books, Reading, MA, 1983.
  • 10S. N. Bose, Plancks gesetz und lichtquantenhypothese, Z. Phys., 1924, 26(1): 178.

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