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Exact solution of the 1D Hubbard model with NN and NNN interactions in the narrow-band limit

机译:在窄带范围内具有NN和NNN相互作用的一维Hubbard模型的精确解

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We present the exact solution, obtained by means of the Transfer Matrix (TM) method, of the 1D Hubbard model with nearest-neighbor (NN) and next-nearest-neighbor (NNN) Coulomb interactions in the atomic limit (t = 0). The competition among the interactions (U, V_1, and V_2) generates a plethora of T = 0 phases in the whole range of fillings. U, V_1, and V_2 are the intensities of the local, NN and NNN interactions, respectively. We report the T = 0 phase diagram, in which the phases are classified according to the behavior of the principal correlation functions, and reconstruct a representative electronic configuration for each phase. In order to do that, we make an analytic limit T → 0 in the transfer matrix, which allows us to obtain analytic expressions for the ground state energies even for extended transfer matrices. Such an extension of the standard TM technique can be easily applied to a wide class of 1D models with the interaction range beyond NN distance, allowing for a complete determination of the T = 0 phase diagrams.
机译:我们提出了通过转移矩阵(TM)方法获得的一维Hubbard模型的精确解,该模型在原子极限(t = 0)中具有最近邻居(NN)和下一个邻居(NNN)库仑相互作用。交互作用(U,V_1和V_2)之间的竞争在整个填充过程中产生了大量的T = 0相。 U,V_1和V_2分别是局部,NN和NNN相互作用的强度。我们报告了T = 0相位图,其中根据主要相关函数的行为对相位进行了分类,并为每个相位重构了代表性的电子配置。为此,我们在传递矩阵中设定了一个解析极限T→0,这使我们即使对于扩展的传递矩阵,也可以获得基态能量的解析表达式。标准TM技术的这种扩展可以轻松应用于交互范围超出NN距离的一维模型,从而完全确定T = 0的相图。

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