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The spin-partitioned total position-spread tensor: An application to Heisenberg spin chains

机译:自旋划分的总位置扩展张量:在海森堡自旋链中的应用

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摘要

The spin partition of the Total Position-Spread (TPS) tensor has been performed for one-dimensional Heisenberg chains with open boundary conditions. Both the cases of a ferromagnetic (high-spin) and an anti-ferromagnetic (low-spin) ground-state have been considered. In the case of a low-spin ground-state, the use of alternating magnetic couplings allowed to investigate the effect of spin-pairing. The behavior of the spin-partitioned TPS (SP-TPS) tensor as a function of the number of sites turned to be closely related to the presence of an energy gap between the ground-state and the first excited-state at the thermodynamic limit. Indeed, a gapped energy spectrum is associated to a linear growth of the SP-TPS tensor with the number of sites. On the other hand, in gapless situations, the spread presents a faster-than-linear growth, resulting in the divergence of its per-site value. Finally, for the case of a high-spin wave function, an analytical expression of the dependence of the SP-TPS on the number of sites n and the total spin-projection S-z has been derived. (C) 2015 AIP Publishing LLC.
机译:对于具有开放边界条件的一维海森堡链,已经执行了总位置扩展(TPS)张量的自旋划分。已经考虑了铁磁(高旋转)和反铁磁(低旋转)基态的情况。在低自旋基态的情况下,使用交流磁耦合可以研究自旋对的影响。自旋分区的TPS(SP-TPS)张量的行为随位点数量的变化已与在热力学极限时基态和第一激发态之间存在能隙密切相关。实际上,带隙的能谱与SP-TPS张量随位点数量的线性增长相关。另一方面,在无缝情况下,价差呈现出比线性增长更快的速度,从而导致其每站点价值的差异。最后,对于高自旋波函数,已经推导了SP-TPS对位点数n和总自旋投影S-z的依赖性的解析表达式。 (C)2015 AIP Publishing LLC。

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