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Phase diagram and continuous pair-unbinding transition of the bilinear-biquadratic S=1 Heisenberg chain in a magnetic field

机译:磁场中双线性-双二次S = 1 Heisenberg链的相图和连续的成对解链跃迁

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摘要

We investigate the properties of the Heisenberg S=1 chain with bilinear and biquadratic interactions in a magnetic field using the density- matrix renormalization-group, Bethe ansatz, and field-theoretical considerations. In a large region of the parameter space, we identify a magnetized ferroquadrupolar Luttinger liquid consisting of a quasicondensate of bound magnon pairs. This liquid undergoes a continuous pair-unbinding transition to a more conventional Luttinger liquid region obtained by polarizing the system above the Haldane gap region. This pair-unbinding transition is shown to be in the Ising universality class on top of a Luttinger liquid, leading to an effective central charge 3/2. We also revisit the nature of the partially polarized Luttinger liquid around and above the Uimin-Lai-Sutherland point. Our results confirm that this is a two-component liquid and rule out the formation of a single-component vector-chiral phase. © 2011 American Physical Society.
机译:我们使用密度矩阵重归一化组,Bethe ansatz和场论考虑因素,研究了在磁场中具有双线性和双二次相互作用的Heisenberg S = 1链的性质。在参数空间的较大区域中,我们确定了磁化的铁四极Luttinger液体,该液体由结合的磁振子对的准缩合物组成。该液体经历连续的成对解键合过渡到更常规的卢廷格液体区域,该区域通过使系统在霍尔丹间隙区域上方极化而获得。这种成对解离的跃迁显示为在Luttinger液体之上的Ising通用性类别,导致有效的中心电荷3/2。我们还重新审视了Uimin-Lai-Sutherland点附近和上方的部分极化的Luttinger液体的性质。我们的结果证实这是一种两组分液体,排除了单组分矢量-手性相的形成。 ©2011美国物理学会。

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