中国物理B ›› 2004, Vol. 13 ›› Issue (2): 229-233.doi: 10.1088/1009-1963/13/2/018

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The pairing correlations in the phased t-U Hubbard model

刘自信, 刘平, 刘亚, 文生辉   

  1. Department of Physics, Henan Normal University, Xinxiang 453002, China
  • 收稿日期:2003-06-27 修回日期:2003-08-18 出版日期:2004-02-06 发布日期:2005-07-06
  • 基金资助:
    Project supported by the Natural Science Foundation of Henan Province and the National Natural Science Foundation of China (Grant Nos 60276004 and 60290083).

The pairing correlations in the phased t-U Hubbard model

Liu Zi-Xin (刘自信), Liu Ping (刘平), Liu Ya (刘亚), Wen Sheng-Hui (文生辉)   

  1. Department of Physics, Henan Normal University, Xinxiang 453002, China
  • Received:2003-06-27 Revised:2003-08-18 Online:2004-02-06 Published:2005-07-06
  • Supported by:
    Project supported by the Natural Science Foundation of Henan Province and the National Natural Science Foundation of China (Grant Nos 60276004 and 60290083).

摘要: In this paper we have studied the phased t-U Hubbard model. Using the constrained path Monte Carlo method, we investigated the effects of phase factor on pairing correlation functions in the ground state, and we found that the long-range correlations are dependent on the choice of phase factor, and for some special values of phase factor there exist long-range pairing correlations only in the strong coupling region.

关键词: Hubbard model, correlation function

Abstract: In this paper we have studied the phased t-U Hubbard model. Using the constrained path Monte Carlo method, we investigated the effects of phase factor on pairing correlation functions in the ground state, and we found that the long-range correlations are dependent on the choice of phase factor, and for some special values of phase factor there exist long-range pairing correlations only in the strong coupling region.

Key words: Hubbard model, correlation function

中图分类号:  (Lattice fermion models (Hubbard model, etc.))

  • 71.10.Fd
75.10.Dg (Crystal-field theory and spin Hamiltonians) 02.30.-f (Function theory, analysis) 02.70.Ss (Quantum Monte Carlo methods)