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Skyrmions in a density wave state: A mechanism for chiral superconductivity

机译:Skyrmions处于密度波状态:手性超导机制

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摘要

Broken symmetry states characterizing density waves of higher angular momentum in correlated electronic systems are intriguing objects. In the scheme of characterization by angular momentum, conventional charge and spin density waves correspond to zero angular momentum. Here, we explore a class of exotic density wave states that have topological properties observed in recently discovered topological insulators. These rich topological density wave states deserve closer attention in not only high temperature superconductors but in other correlated electron states, as in heavy fermions, of which an explicit example will be discussed. The state discussed has nontrivial charge 2e skyrmionic spin texture. These skyrmions can condense into a charged superfluid. Alternately, they can fractionalize into merons and anti-merons. The fractionalized particles that are confined in skyrmions in the insulating phase, can emerge at a deconfined quantum critical point, which separates the insulating and the superconducting phases. These fractional particles form a two-component spin-singlet chiral (d(x2-y2)+/- id(xy)) wave superconducting state that breaks time reversal symmetry. Possible connections of this exotic order to the superconducting state in the heavy-fermion material URu2Si2 are suggested. The direct evidence of such a chiral superconducting state is polar Kerr effect that was observed recently.
机译:在相关的电子系统中,表征较高角动量密度波的对称对称状态是令人感兴趣的对象。在通过角动量表征的方案中,常规电荷和自旋密度波对应于零角动量。在这里,我们探索了一类奇特的密度波状态,这些状态具有在最近发现的拓扑绝缘体中观察到的拓扑特性。这些丰富的拓扑密度波状态不仅在高温超导体中而且在其他相关的电子状态(如重费米子)中都应引起更多关注,下面将讨论其中的一个明确示例。讨论的状态具有非平凡的电荷2e天体自旋织构。这些天体离子可凝结成带电的超流体。或者,它们可以分成瓜子和反瓜子。限制在绝缘相中的天空离子中的分馏颗粒可以出现在限定的量子临界点,该临界点将绝缘相和超导相分离。这些分数粒子形成破坏时间反转对称性的两组分自旋单手性(d(x2-y2)+/- id(xy))波超导状态。建议在重费米子材料URu2Si2中将此奇异顺序与超导状态联系起来。这种手性超导状态的直接证据是最近观察到的极性克尔效应。

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