Pramana | |
Role of next-nearest-neighbour hopping in the internal structure of the ground state and finite temperature quantities of 2D t-J model | |
N S Mondal11  N K Ghosh1  | |
[1] Department of Physics, University of Kalyani, Kalyani 741 235, India$$ | |
关键词: High-temperature superconductivity; t-J model; thermodynamic property; ð‘‡c.; | |
DOI : | |
学科分类:物理(综合) | |
来源: Indian Academy of Sciences | |
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【 摘 要 】
An exact diagonalization calculation for a small cluster in the two-dimensional t-J model has been studied to calculate two-hole correlation. Calculations reveal dominant hole–hole correlation for holes sitting on next-nearest-neighbour (NNN) sites and critical coupling occurs at $J/t = 0.8$. With the increase in negative-type NNN hopping, correlation decreases at NNN sites whereas it increases at other sites. The thermodynamic properties such as entropy and specific heat are studied as functions of temperature with various NNN hopping strength. Results show that with the inclusion of negative NNN hopping, the system becomes more ordered. A qualitative transition temperature region has been estimated. It is shown that with the increase in NNN hopping strength, ð‘‡c increases. Specific heat results show non-Fermi liquid-type behaviour of the system. All our calculations establish the importance of negative-type NNN hopping.
【 授权许可】
Unknown
【 预 览 】
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RO201912040498052ZK.pdf | 408KB | ![]() |