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Kagome 磁体中自旋激发的热霍尔效应

Thermal Hall Effect of Spin Excitations in a Kagome Magnet.

作者信息

Hirschberger Max, Chisnell Robin, Lee Young S, Ong N P

机构信息

Department of Physics, Princeton University, Princeton, New Jersey 08544, USA.

Department of Physics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Phys Rev Lett. 2015 Sep 4;115(10):106603. doi: 10.1103/PhysRevLett.115.106603. Epub 2015 Sep 3.

Abstract

At low temperatures, the thermal conductivity of spin excitations in a magnetic insulator can exceed that of phonons. However, because they are charge neutral, the spin waves are not expected to display a thermal Hall effect. However, in the kagome lattice, theory predicts that the Berry curvature leads to a thermal Hall conductivity κ(xy). Here we report observation of a large κ(xy) in the kagome magnet Cu(1-3, bdc) which orders magnetically at 1.8 K. The observed κ(xy) undergoes a remarkable sign reversal with changes in temperature or magnetic field, associated with sign alternation of the Chern flux between magnon bands. The close correlation between κ(xy) and κ(xx) firmly precludes a phonon origin for the thermal Hall effect.

摘要

在低温下,磁性绝缘体中自旋激发的热导率可能超过声子的热导率。然而,由于自旋波是电荷中性的,预计它们不会表现出热霍尔效应。然而,在 Kagome 晶格中,理论预测贝里曲率会导致热霍尔电导率 κ(xy)。在此,我们报告了在 Kagome 磁体 Cu(1-3, bdc) 中观测到的大 κ(xy),该磁体在 1.8 K 时发生磁有序。观测到的 κ(xy) 随温度或磁场变化发生显著的符号反转,这与磁振子能带之间的陈磁通量的符号交替有关。κ(xy) 和 κ(xx) 之间的紧密关联明确排除了热霍尔效应的声子起源。

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