论文标题

精确解决的旋转1/2的磁化高原和两分纠缠

Magnetization plateaus and bipartite entanglement of an exactly solved spin-1/2 Ising-Heisenberg orthogonal-dimer chain

论文作者

Gálisová, L., Strečka, J., Verkholyak, T., Havadej, S.

论文摘要

SPIN-1/2正交二聚体链由经常交替的ISING组成,而Heisenberg二聚体则通过传输 - 矩阵方法在磁场的存在下完全溶解。结果表明,基于六个不同阶段的地面相图涉及。除了具有完全极化的旋转的铁磁相外,还遇到单线反铁磁和调制的抗铁磁磁性阶段,以零温度的磁化曲线表现为零磁化磁力高原,令人沮丧的铁磁和单线磁性阶段,导致了一个造成的单线阶段,导致了一个相互构建的元素,并最终使元素化了元素。铁磁相具有翻译损坏的对称性,导致非常规的磁化高原。单个接地态的量子特征通过同时发生进行量化,该特征测量了零和非零温度的海森伯格二聚体纯和混合状态内的两分和混合状态的强度。阐明了与温度和/或磁场升高后的一般期望相反的参数区域,与一般期望相反。

Spin-1/2 orthogonal-dimer chain composed of regularly alternating Ising and Heisenberg dimers is exactly solved in a presence of the magnetic field by the transfer-matrix method. It is shown that the ground-state phase diagram involves in total six different phases. Besides the ferromagnetic phase with fully polarized spins one encounters the singlet antiferromagnetic and modulated antiferromagnetic phases manifested in zero-temperature magnetization curves as zero magnetization plateau, the frustrated ferrimagnetic and singlet ferrimagnetic phases causing existence of an intermediate one-half magnetization plateau, and finally, the intriguing modulated ferrimagnetic phase with a translationally broken symmetry leading to an unconventional one-quarter magnetization plateau. The quantum character of individual ground states is quantified via the concurrence, which measures a strength of the bipartite entanglement within the pure and mixed states of the Heisenberg dimers at zero as well as nonzero temperatures. The parameter region, where the bipartite entanglement may be in contrast to general expectations reinforced upon increasing of temperature and/or magnetic field, is elucidated.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源