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Low-energy excitations in fermionic spin glasses: A quantum-dynamical image of Parisi symmetry breaking

机译:费米子自旋玻璃中的低能激发:Parisi对称破坏的量子动力学图像

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摘要

We report large effects of Parisi replica permutation symmetry breaking (RPSB) on elementary excitations of fermionic systems with frustrated magnetic interactions. The electronic density of states is obtained exactly in the zero-temperature limit for (K = 1)-step RPSB together with exact relations for arbitrary breaking K, which lead to a new fermionic and dynamical Parisi solution at K = infinity. The Ward identity for charge conservation indicates RPSB effects on the conductivity in metallic quantum spin glasses. This implies that RPSB is essential for any fermionic system showing spin glass sections within its phase diagram. An astonishing similarity with a neural network problem is also observed. [References: 15]
机译:我们报告了巴黎人复制品排列对称性打破(RPSB)对受挫的磁性相互作用的铁氧体系的基本激发的巨大影响。精确地在(K = 1)步RPSB的零温度极限下获得状态的电子密度,以及任意破坏K的精确关系,这会导致在K =无穷大时出现新的费米子态和动态Parisi解。电荷保留的Ward身份表明RPSB对金属量子自旋玻璃中电导率的影响。这意味着RPSB对于任何在相图内显示自旋玻璃截面的铁离子系统都是必不可少的。还观察到与神经网络问题的惊人相似性。 [参考:15]

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