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在莫特绝缘体中出现新型的泡利顺磁量子相。

Novel Pauli-paramagnetic quantum phase in a Mott insulator.

机构信息

Department of Physics, Kyoto University, Kyoto 606-8502, Japan.

出版信息

Nat Commun. 2012;3:1090. doi: 10.1038/ncomms2082.

Abstract

In Mott insulators, the strong electron-electron Coulomb repulsion localizes electrons. In dimensions greater than one, their spins are usually ordered antiferromagnetically at low temperatures. Geometrical frustrations can destroy this long-range order, leading to exotic quantum spin liquid states. However, their magnetic ground states have been a long-standing mystery. Here we show that a quantum spin liquid state in the organic Mott insulator EtMe(3)SbPd(dmit)(2) (where Et is C(2)H(5)-, Me is CH(3)-, and dmit is 1,3-dithiole-2-thione-4,5-dithiolate) with two-dimensional triangular lattice has Pauli-paramagnetic-like low-energy excitations, which are a hallmark of itinerant fermions. Our torque magnetometry down to low temperatures (30 mK) up to high fields (32 T) reveals distinct residual paramagnetic susceptibility comparable to that in a half-filled two-dimensional metal, demonstrating the magnetically gapless nature of the ground state. Moreover, our results are robust against deuteration, pointing toward the emergence of an extended 'quantum critical phase', in which low-energy spin excitations behave as in paramagnetic metals with Fermi surface, despite the frozen charge degree of freedom.

摘要

在莫特绝缘体中,强电子-电子库仑排斥作用会使电子局域化。在维度大于一维的情况下,其自旋通常在低温下呈反铁磁有序。几何各向异性可能会破坏这种长程有序,导致奇异的量子自旋液体状态。然而,其磁基态一直是一个长期存在的谜团。在这里,我们表明,二维三角晶格的有机莫特绝缘体 EtMe(3)SbPd(dmit)(2)(其中 Et 是 C(2)H(5)-,Me 是 CH(3)-,dmit 是 1,3-二硫代-2-噻唑-4,5-二硫醇)中存在一种量子自旋液体态,具有类巡游费米子的 Pauli 顺磁低能激发。我们的扭矩磁强计测量结果表明,在低至 30mK 的低温和高达 32T 的高磁场下,存在明显的剩余顺磁磁化率,与半满二维金属相当,证明了基态的无能隙性质。此外,我们的结果不受氘化的影响,指向扩展的“量子临界相”的出现,其中低能自旋激发表现为具有费米面的顺磁金属,尽管电荷自由度被冻结。

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