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Dynamical solutions of a quantum Heisenberg spin glass model

机译:量子海森堡自旋玻璃模型的动力学解

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We consider quantum-dynamical phenomena in the SU(2), S = 1/2 infinite-range quantum Heisenberg spin glass. For a fermionic generalization of the model we formulate generic dynamical self-consistency equations. Using the Popov-Fedotov trick to eliminate contributions of the non-magnetic fermionic states we study in particular the isotropic model variant on the spin space. Two complementary approximation schemes are applied: one restricts the quantum spin dynamics to a manageable number of Matsubara frequencies while the other employs an expansion in terms of the dynamical local spin susceptibility. We accurately determine the critical temperature T c of the spin glass to paramagnet transition. We find that the dynamical correlations cause an increase of T c by 2% compared to the result obtained in the spin-static approximation. The specific heat C(T) exhibits a pronounced cusp at T c . Contradictory to other reports we do not observe a maximum in the C(T)-curve above T c .
机译:我们考虑SU(2)中的量子动力学现象,S = 1/2无限范围量子海森堡自旋玻璃。对于模型的费米离子泛化,我们制定了一般的动力学自洽方程。使用Popov-Fedotov技巧来消除非磁性铁电态的贡献,我们特别研究了自旋空间上的各向同性模型变体。应用了两种互补的近似方案:一种将量子自旋动力学限制在可控制的松原频率范围内,而另一种在动态局部自旋敏感性方面进行扩展。我们准确地确定了自旋玻璃到顺磁性转变的临界温度T c。我们发现,与自旋静态近似中获得的结果相比,动力学相关性导致T c增加2%。比热C(T)在T c处显示出明显的尖峰。与其他报告相反,我们没有在T c之上的C(T)曲线中观察到最大值。

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