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首页> 外文期刊>Journal of the Physical Society of Japan >Ground-State Phase Diagram of S = 2 Heisenberg Chains with Alternating Single-Site Anisotropy
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Ground-State Phase Diagram of S = 2 Heisenberg Chains with Alternating Single-Site Anisotropy

机译:具有交替单点各向异性的S = 2 Heisenberg链的基态相图

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The ground-state phase diagram of S = 2 antiferromagnetic Heisenberg chains with coexisting uniform and alternating single-site anisotropies is investigated by the numerical exact diagonalization and density matrix renormalization group methods. We find the Haldane, large-D, Néel, period-doubled Néel, gapless spin fluid, quantized and partial ferrimagnetic phases. The Haldane phase is limited to the close neighborhood of the isotropic point. Within numerical accuracy, the transition from the gapless spin-fluid phase to the period-doubled Néel phase is a direct transition. Nevertheless, the presence of a narrow spin-gap phase between these two phases is suggested on the basis of the lowenergy effective theory. The ferrimagnetic ground state is present in a wide parameter range. This suggests the realization of magnetized single-chain magnets with a uniform spin magnitude by controlling the environment of each magnetic ion without introducing ferromagnetic interactions.
机译:通过数值精确对角化和密度矩阵重归一化群方法研究了S = 2反铁磁Heisenberg链的基态相图,该相态具有均匀且交替的单点各向异性。我们发现了Haldane,大D,Néel,周期加倍的Néel,无间隙自旋流体,定量和部分亚铁磁相。霍尔丹相限于各向同性点的近邻。在数值精度范围内,从无间隙自旋流体相到周期倍数Néel相的过渡是直接过渡。然而,根据低能有效理论,建议在这两个相之间存在狭窄的自旋间隙相。亚铁磁性基态存在于较宽的参数范围内。这暗示了通过控制每个磁离子的环境而不引入铁磁相互作用来实现具有均匀自旋幅度的磁化单链磁体。

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