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首页> 外文期刊>Annals of Physics >Revisiting numerical real-space renormalization group for quantum lattice systems
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Revisiting numerical real-space renormalization group for quantum lattice systems

机译:为量子晶格系统重新探测数值实空空间重新成型组

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摘要

Although substantial progress has been achieved in solving quantum impurity problems, the numerical renormalization group (NRG) method generally performs poorly when applied to quantum lattice systems in a real-space blocking form. The approach was thought to be unpromising for most lattice systems owing to its flaw in dealing with the boundaries of the block. Here the discovery of intrinsic prescriptions to cure interblock interactions is proposed which is able to clear up the boundary obstacle in applying the NRG to quantum lattice systems. While the resulting RG transformation turns out to be strict in the thermodynamic limit, benchmark tests of the algorithm on a one-dimensional Heisenberg antiferromagnet and a two-dimensional tight-binding model demonstrate its numerical efficiency in resolving low-energy spectra for finite lattice systems. (C) 2018 Elsevier Inc. All rights reserved.
机译:尽管在求解量子杂质问题方面已经实现了实质性进步,但是数值重整组(NRG)方法通常在以真实空间阻挡形式施加到量子晶格系统时的表现差。 由于其缺陷在处理块的界限时,这些方法被认为是对大多数格子系统的缺陷。 这里提出了发现固定互动相互作用的固有处方的内在规定的界面,其能够清除将NRG施加到量子晶格系统时的边界障碍物。 虽然所得到的RG变换在热力学极限中变得严格,但是一维Heisenberg反铁磁体和二维紧密绑定模型的算法的基准测试证明了用于解决有限晶格系统的低能量光谱的数值效率 。 (c)2018年Elsevier Inc.保留所有权利。

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