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Excitation spectrum gap and spin-wave velocity of XXZ Heisenberg chains: global renormalization-group calculation

机译:XXZ海森堡链的激发谱隙和自旋波速度:全局重整化组计算

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摘要

The anisotropic XXZ spin-1/2 Heisenberg chain is studied using renormalization-group theory. The specific heats and nearest-neighbor spin-spin correlations are calculated throughout the entire temperature and anisotropy ranges in both ferromagnetic and antiferromagnetic regions, obtaining a global description and quantitative results. We obtain, for all anisotropies, the antiferromagnetic spin-liquid spin-wave velocity and the Ising-like ferromagnetic excitation spectrum gap, exhibiting the spin-wave to spinon crossover. A number of characteristics of purely quantum nature are found: The in-plane interaction s(i)(x)s(j)(x)+s(i)(y)s(j)(y) induces an antiferromagnetic correlation in the out-of-plane s(i)(z) component, at higher temperatures in the antiferromagnetic XXZ chain, dominantly at low temperatures in the ferromagnetic XXZ chain, and, in-between, at all temperatures in the XY chain. We find that the converse effect also occurs in the antiferromagnetic XXZ chain: an antiferromagnetic s(i)(z)s(j)(z) interaction induces a correlation in the s(i)(xy) component. As another purely quantum effect, (i) in the antiferromagnet, the value of the specific heat peak is insensitive to anisotropy and the temperature of the specific heat peak decreases from the isotropic (Heisenberg) with introduction of either type (Ising or XY) of anisotropy; and (ii) in complete contrast, in the ferromagnet, the value and temperature of the specific heat peak increase with either type of anisotropy.
机译:利用重归一化群理论研究了各向异性的XXZ自旋1/2 Heisenberg链。在铁磁和反铁磁区域的整个温度和各向异性范围内计算比热和最近邻自旋自旋相关性,从而获得整体描述和定量结果。对于所有各向异性,我们都获得了反铁磁自旋液体自旋波速度和类似于Ising的铁磁激发谱隙,表现出自旋波与旋子的交叉。发现了许多纯量子性质的特征:平面内相互作用s(i)(x)s(j)(x)+ s(i)(y)s(j)(y)引起反铁磁相关在反铁磁XXZ链中的较高温度下,主要在铁磁XXZ链中的低温下以及在XY链中的所有温度之间,平面外s(i)(z)分量都处于较高位置。我们发现反作用也发生在反铁磁XXZ链中:反铁磁s(i)(z)s(j)(z)相互作用会引起s(i)(xy)分量相关。作为另一种纯量子效应,(i)在反铁磁体中,比热峰的值对各向异性不敏感,并且通过引入两种类型(Ising或XY)的各向异性,比热峰的温度从各向同性(Heisenberg)降低。各向异性(ii)与之形成鲜明对比的是,在铁磁体中,比热峰的值和温度随任何一种各向异性而增加。

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