论文标题

spin-1/2中的量子顺磁性状态变形蜂窝状 - 丁香抗抗铁磁铁 - 应用于Cu $ _2 $(pymca)$ _ 3 $(clo $ _4 $)

Quantum paramagnetic states in the spin-1/2 distorted honeycomb-lattice Heisenberg antiferromagnet -- application to Cu$_2$(pymca)$_3$(ClO$_4$)

论文作者

Shimokawa, Tokuro, Takano, Ken'ichi, Honda, Zentaro, Okutani, Akira, Hagiwara, Masayuki

论文摘要

我们研究了带有三个交换互动的Spin-1/2蜂窝状抗铁磁性(AF)heisenberg模型的地面阶段cu_2(pymca)_3(clo_4)} $。我们通过特殊护理重新测量了其多晶样品的磁敏感性,并通过基于量子蒙特卡洛(QMC)方法的数值结果来确定该材料的交换参数。 QMC方法还提供了$ j {\ rm a}/j _ {\ rm c} $ - $ j _ {\ rm b}/j _ {\ rm c} $ plane。该相图由一个小的N $ {\ rm \ acute {e}} $ EL相位和围绕N $ {\ rm \ actute {e}} $ el apeas的间隙量子pragragnetic相。后者包括六个六角形型状态和二聚体型状态的六个机制,而二聚体型状态则交替而没有缩小旋转间隙的边界。我们使用QMC方法进一步计算每个阶段的相等自旋结构因子。通过精确的对角度方法计算的自旋动力学在AF阶段和AF阶段表现出连续体。具有强大的六边形 - 单型相关性的州的特征性四个能带结构可以通过未来的中子散射测量值来阐明$ {\ rm cu_2(pymca)_3(clo_4)} $的地面。

We investigate the ground-state phase diagram of a spin-1/2 honeycomb-lattice antiferromagnetic (AF) Heisenberg model with three exchange interactions, $J_{\rm A}$, $J_{\rm B}$, and $J_{\rm C}$ that is realized in a distorted honeycomb-lattice antiferromagnet ${\rm Cu_2 (pymca)_3 (ClO_4)}$. We remeasured the magnetic susceptibility of its polycrystalline sample with special care, and determined the exchange parameters of this material through the comparison with numerical results based on a quantum Monte Carlo (QMC) method. The QMC method also provides a ground-state phase diagram in the $J_{\rm A}/J_{\rm C}$-$J_{\rm B}/J_{\rm C}$ plane. The phase diagram consists of a small N${\rm \acute{e}}$el phase and a gapped quantum paramagnetic phase surrounding the N${\rm \acute{e}}$el phase. The latter includes six regimes of hexagonal-singlet-type states and dimer-singlet-type states alternatingly without boundaries closing the spin gap. We further calculate the equal-time spin structure factor in each phase using the QMC method. The computed spin dynamics by the exact diagonalization method exhibits continuums near and in the AF phase. Characteristic four energy band structures in the state with strong hexagonal-singlet-type correlations are informative to clarify the ground-state of ${\rm Cu_2 (pymca)_3 (ClO_4)}$ by future neutron scattering measurements.

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