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Fluctuation-induced first order transition due to Griffiths anomalies of the Cluster glass phase

机译:团簇玻璃相的格里菲斯异常引起的由波动引起的一阶跃迁

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摘要

In itinerant magnetic systems with disorder, the quantum Griffiths phase at T = 0 is unstable to formation of a cluster glass (CG) of frozen droplet degrees of freedom. In the absence of the fluctuations associated with these degrees of freedom, the transition from the paramagnetic Fermi liquid (PMFL) to the ordered phase proceeds via a conventional second-order quantum phase transition. However, when the Griffiths anomalies due to the broad distribution of local energy scales are included, the transition is driven first-order via a novel mechanism for a fluctuation induced first-order transition. At higher temperatures, thermal effects restore the transition to second-order. Implications of the enhanced non-Ohmic dissipation in the CG phase are briefly discussed.
机译:在具有无序的巡回磁性系统中,T = 0时的量子格里菲斯相对于形成冻结液滴自由度的簇玻璃(CG)不稳定。在没有与这些自由度相关的波动的情况下,从顺磁性费米液体(PMFL)到有序相的跃迁会通过常规的二阶量子相变进行。但是,当包括由于局部能级的广泛分布而引起的格里菲斯异常时,则通过一种新的由波动引起的一阶跃迁机制来驱动跃迁。在较高的温度下,热效应会使过渡恢复到二阶。简要讨论了CG相中增强的非欧姆耗散的含义。

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