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Magnetization jump in one dimensional J − Q2 model with anisotropic exchange

机译:各向异性交换的一维J-withQ2模型中的磁化跃迁

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摘要

We investigate the adiabatic magnetization process of the one-dimensional J − Q 2 model with XXZ anisotropy g in an external magnetic field h by using density matrix renormalization group (DMRG) method. According to the characteristic of the magnetization curves, we draw a magnetization phase diagram consisting of four phases. For a fixed nonzero pair coupling Q, (i) when g < −1, the ground state is always ferromagnetic in spite of h; (ii) when g > −1 but still small, the whole magnetization curve is continuous and smooth; (iii) if further increasing g, there is a macroscopic magnetization jump from partially- to fully-polarized state; (iv) for a sufficiently large g, the magnetization jump is from non- to fully-polarized state. By examining the energy per magnon and the correlation function, we find that the origin of the magnetization jump is the condensation of magnons and the formation of magnetic domains. We also demonstrate that while the experienced states are Heisenberg-like without long-range order, all the jumped-over states have antiferromagnetic or Néel long-range orders, or their mixing.
机译:我们使用密度矩阵重整化组(DMRG)方法研究了外部磁场h中具有XXZ各向异性g的一维J-Q 2模型的绝热磁化过程。根据磁化曲线的特点,绘制了由四个相组成的磁化相图。对于固定的非零对偶耦合Q,(i)当g <-1时,尽管h,基态始终是铁磁性的; (ii)当g> -1但仍然很小时,整个磁化曲线是连续且平滑的; (iii)如果g进一步增加,则宏观磁化强度将从部分极化状态跃迁到完全极化状态; (iv)对于足够大的g,磁化跃迁是从非极化状态到全极化状态。通过检查每个磁振子的能量和相关函数,我们发现磁化跃迁的起源是磁振子的凝结和磁畴的形成。我们还证明,尽管有经验的状态类似于海森堡,没有远距离有序,但所有跳过的状态都具有反铁磁或Néel远距离有序或它们的混合。

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