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莫特相变坍塌和统计量子临界点。

Mottness collapse and statistical quantum criticality.

机构信息

Instituut-Lorentz for Theoretical Physics, Universiteit Leiden, PO Box 9506, 2300 RA Leiden, The Netherlands.

出版信息

Philos Trans A Math Phys Eng Sci. 2011 Apr 28;369(1941):1599-625. doi: 10.1098/rsta.2010.0188.

Abstract

We put forward here the case that the anomalous electron states found in cuprate superconductors and related systems are rooted in a deeply non-classical fermion sign structure. The collapse of Mottness, as advocated by Phillips and supported by recent dynamical cluster approximation results on the Hubbard model, sets the necessary microscopic conditions. The crucial insight is due to Weng, who demonstrated that, in the presence of Mottness, the fundamental workings of quantum statistics change, and we will elaborate on the effects of this Weng statistics with an emphasis on characterizing it further using numerical methods. The pseudo-gap physics of the underdoped regime appears as a consequence of the altered statistics and the profound question is how to connect this by a continuous quantum phase transition to the overdoped regime ruled by normal Fermi-Dirac statistics. Proof of principle follows from Ceperley's constrained path integral formalism, in which states can be explicitly constructed showing a merger of Fermi-Dirac sign structure and scale invariance of the quantum dynamics.

摘要

我们在这里提出,在铜氧化物高温超导体和相关体系中发现的异常电子态源于一种深层次的非经典费米子符号结构。正如菲利普斯所倡导的,莫特绝缘态的崩溃,以及最近在哈伯模型上的动力学团簇近似结果所支持的,为这一微观条件设定了必要的条件。这一关键的见解归功于翁,他证明了在莫特绝缘态存在的情况下,量子统计的基本运作发生了变化,我们将通过数值方法进一步阐述这种翁统计的影响,并强调对其进行进一步的特征描述。欠掺杂区的赝能隙物理现象是由改变的统计数据所导致的,而一个深刻的问题是,如何通过连续的量子相变将其与由正常费米-狄拉克统计所统治的过掺杂区联系起来。从切珀利的约束路径积分形式主义中可以得到原理上的证明,在这种形式主义中,可以明确地构建出显示费米-狄拉克符号结构和量子动力学的标度不变性合并的状态。

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