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首页> 外文期刊>Pramana >Role of next-nearest-neighbour hopping in the internal structure of the ground state and finite temperature quantities of 2D t-J model
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Role of next-nearest-neighbour hopping in the internal structure of the ground state and finite temperature quantities of 2D t-J model

机译:近邻跳变在二维t-J模型的基态内部结构和有限温度量中的作用

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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, T 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.
机译:研究了二维t-J模型中小簇的精确对角化计算,以计算两孔相关性。计算结果表明,位于次近邻(NNN)位置上的孔具有主要的孔-孔相关性,并且临界耦合发生在J / t = 0.8处。随着负型NNN跳变的增加,相关性在NNN站点处降低,而在其他站点处增加。研究了具有各种NNN跳跃强度的热力学性质(例如熵和比热)与温度的函数关系。结果表明,随着负NNN跳变的出现,系统变得更有序。已经估计了定性转变温度区域。结果表明,随着NNN跳跃强度的增加,T c 增大。比热结果显示了该系统的非费米液态行为。我们所有的计算都确定了负型NNN跳变的重要性。

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