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Exact renormalization of the random transverse-field Ising spin chain in the strongly ordered and strongly disordered Griffiths phases - art. no. 064416

机译:在强有序和强无序格里菲斯相中随机横向场Ising自旋链的精确重整化-艺术。没有。 064416

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摘要

Fisher's [Phys. Rev. B 51, 6411 (1995)] real-space renormalization-group (RG) treatment of random transverse- field Ising spin chains is extended into the strongly ordered and strongly disordered Griffiths phases, and asymptotically exact results are obtained. In the noncritical region the asymmetry of the renormalization of the couplings and the transverse fields is related to a nonlinear quantum control parameter Delta, which is a natural measure of the distance from the quantum critical point. Delta, which is found to stay invariant along the RG trajectories, and has been expressed by the initial disorder distributions, stands in the singularity exponents of different physical quantities (magnetization, susceptibility, specific heat, etc.), which are exactly calculated, In this way we have observed a weak- universality scenario: the Griffiths-McCoy singularities do not depend on the form of the disorder, provided the nonlinear quantum control parameter has the same value. The exact scaling function of the magnetization with a small applied magnetic field is calculated, and the critical point magnetization singularity is determined in a simple, direct way. [References: 32]
机译:Fisher的[Phys。 Rev. B 51,6411(1995)]将随机横向场Ising自旋链的实空间重整化组(RG)处理扩展到强有序和强无序的格里菲斯相中,并且获得了渐近精确的结果。在非关键区域,耦合和横向场的重新归一化的不对称与非线性量子控制参数Delta有关,该参数是对距量子临界点距离的自然度量。被发现沿RG轨迹保持不变的Delta,并已由初始无序分布表示,它代表了不同物理量(磁化,磁化率,比热等)的精确指数,它们是精确计算的,在这样,我们观察到了一个弱通用性的情况:只要非线性量子控制参数具有相同的值,格里菲思-麦科伊奇异点就不依赖于无序的形式。计算出在施加较小磁场的情况下磁化的精确比例函数,并以简单直接的方式确定临界点磁化奇点。 [参考:32]

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