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Signatures of Fractionalization in Spin Liquids from Interlayer Thermal Transport

机译:中间层热传输中旋转液体分数化的签名

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Quantum spin liquids (QSLs) are intriguing phases of matter possessing fractionalized excitations. Several quasi-two-dimensional materials have been proposed as candidate QSLs, but direct evidence for fractionalization in these systems is still lacking. In this paper, we show that the interplane thermal conductivity in layered QSLs carries a unique signature of fractionalization. We examine several types of gapless QSL phases—a Z 2 QSL with either a Dirac spectrum or a spinon Fermi surface, and a U ( 1 ) QSL with a Fermi surface—and consider both clean and disordered systems. In all cases, the in-plane and c -axis thermal conductivities have a different power-law dependence on temperature because of the different mechanisms of transport in the two directions: In the planes, the thermal current is carried by fractionalized excitations, whereas the interplane current is carried by integer (nonfractional) excitations. In layered Z 2 and U ( 1 ) QSLs with a Fermi surface, and in the disordered Z 2 QSL with a Dirac dispersion, the c -axis thermal conductivity is parametrically smaller than the in-plane one but parametrically larger than the phonon contribution at low temperatures.
机译:量子旋转液体(QSL)是具有渐进式激发的物质的有趣阶段。已经提出了几种准二维材料作为候选QSL,但仍然缺乏这些系统中的分数化的直接证据。在本文中,我们表明层状QSL中的跳线导热系数具有鲜明化的独特签名。我们使用DIRAC光谱或SpinOn Fermi表面检查几种类型的无曲QSL相位-A Z 2 QSL,以及具有FERMI表面的U(1)QSL - 并考虑干净和无序的系统。在所有情况下,由于两个方向上的运输机制不同:在平面上,平面内和C-XIS热导率具有不同的动力法依赖性,因此在平面中,热流由缩小的激励携带,而是衬套电流由整数(非判断)激发携带。在具有FERMI表面的层状Z 2和U(1)QSL中,并且在具有DIDAC色散的无序Z 2 QSL中,C-XIS导热率比在平面内,但参数大于位于音色贡献低温。

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