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首页> 外文期刊>Journal of the Physical Society of Japan >Notes on Ground-State Properties of Mixed Spin-1 and Spin-1/2 Lieb-Lattice Heisenberg Antiferromagnets
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Notes on Ground-State Properties of Mixed Spin-1 and Spin-1/2 Lieb-Lattice Heisenberg Antiferromagnets

机译:关于混合旋转1和旋转1/2的地面性质的注意事项

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Quantum Monte Carlo (QMC) simulations are performed to study ground-state properties of a mixed spin-1 and spin-1/2 Lieb-lattice Heisenberg antiferromagnet, in order to get further insight beyond the modified spin-wave (MSW) study reported in [J. Phys. Soc. Jpn. 86, 014002 (2017)]. It is confirmed that the MSW results are in good agreement with the QMC results. In particular, the scaling relation found in the MSW study, which argues that sublattice spin reductions are inversely proportional to the sublattice sizes, is observed in our QMC simulation. We present a rigorous proof for spontaneous sublattice magnetizations induced by an infinitesimal uniform magnetic field. The calculation process in the MSW theory is reexamined to clarify the mathematical structure behind the scaling relation for sublattice long-range orders.
机译:对Quantum Monte Carlo(QMC)模拟进行了学习混合旋转1和Spin-1/2 LieB-Lattice Heisenberg反霉素的地面性质,以便在报告的改进的旋转波(MSW)研究之外进一步了解 [J. 物理。 SOC。 日本。 86,014002(2017)]。 确认MSW结果与QMC结果吻合良好。 特别地,在我们的QMC仿真中观察到,在MSW研究中发现的缩放关系,该研究认为,在我们的QMC仿真中,观察到子系统旋转减少与子变差尺寸成反比。 我们为无限均匀磁场引起的自发子分子磁化呈现严格的证据。 MSW理论中的计算过程重新审视以阐明Sublattice远程订单的缩放关系背后的数学结构。

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