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Spin dynamics of the antiferromagnetic spin-1/2 chain at finite magnetic fields and intermediate temperatures

机译:在有限磁场和中间温度下反铁磁spin-1 / 2链的自旋动力学

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We present a study of the dynamic structure factor of the antiferromagnetic spin-1/2 Heisenberg chain at finite temperalures and finite magnetic fields. Using quantum Monte Carlo based on the stochastic series expansion and maximum entropy methods, we evaluate the longitudinal and the transverse dynamic structure factors from vanishing magnetic fields up to and above the threshold B_c for ferromagnetic saturation, as well as for high and for intermediate temperatures. We study the field-induced redistribution of spectral weight contrasting longitudinal versus transverse excitations. At finite fields below saturation incommensurate low-energy modes are found consistent with zero-temperature Bethe ansatz. The crossover between the field-induced ferromagnet above B_c and the Luttinger liquid below B_c is analyzed in terms of the transverse spin dynamics. Evaluating sum rules we assess the quality of the analytic continuation and demonstrate excellent consistency of the maximum entropy results.
机译:我们目前对有限温度和有限磁场下反铁磁自旋1/2 Heisenberg链的动态结构因子进行研究。使用基于随机级数展开和最大熵方法的量子蒙特卡洛方法,我们评估了消失的磁场对铁磁饱和,高温和中温时阈值B_c以及以上的消失的纵向和横向动态结构因子。我们研究了频谱引起的场重重新分布,对比了纵向激励和横向激励。在饱和以下的有限场中,发现与零温度Bethe ansatz一致的不相称的低能量模式。根据横向自旋动力学分析了B_c上方的场感应铁磁体和B_c下方的Luttinger液体之间的交叉。评价求和规则,我们评估分析连续性的质量,并证明最大熵结果的出色一致性。

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