Hole correlation and thermodynamic properties of the 2D t-t'-t''-J model

Krishanu Roy, Srijani Ghosh, N. K. Ghosh
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Abstract

The role of next nearest neighbor (NNN) hopping (t') and next to NNN hopping (t'') on hole pairing and thermodynamic properties such as specific heat, entropy have been investigated using two dimensional (2D) hole-doped t-t'-t''-J model based on exact diagonalization (ED) method. Standard Periodic boundary conditions are applied to minimize error due to finite size effect as the calculations are made using small sized cluster geometry. The attraction between holes increases with the inclusion of third neighbor hopping term. The maximum probability of hole pairing is at NNN site. The system goes to more disordered and ordered state with the increase of long range hopping terms at temperature T≤0.35t and T>0.35t, respectively. A single peak nature is observed in specific heat graph.
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二维t-t'-t " -J模型的空穴相关性及热力学性质
利用基于精确对角化(ED)方法的二维(2D)空穴掺杂t-t'-t " -J模型,研究了下近邻(NNN)跳变(t')和旁近邻(NNN)跳变(t')对空穴配对和比热、熵等热力学性质的影响。标准周期边界条件的应用,以尽量减少由于有限尺寸效应的误差,因为计算是使用小尺寸集群几何。随着第三邻跳项的加入,空穴间的引力增大。空穴配对的最大概率出现在NNN位点。在温度T≤0.35t和T>0.35t时,随着长距离跳变项的增加,系统分别向无序态和有序态发展。比热图呈现单峰性质。
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