Cross Correlated Materials Research Group, Frontier Research System, Riken, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.
Phys Rev Lett. 2010 Feb 12;104(6):066403. doi: 10.1103/PhysRevLett.104.066403. Epub 2010 Feb 10.
We present a theory of the thermal Hall effect in insulating quantum magnets, where the heat current is totally carried by charge-neutral objects such as magnons and spinons. Two distinct types of thermal Hall responses are identified. For ordered magnets, the intrinsic thermal Hall effect for magnons arises when certain conditions are satisfied for the lattice geometry and the underlying magnetic order. The other type is allowed in a spin liquid which is a novel quantum state since there is no order even at zero temperature. For this case, the deconfined spinons contribute to the thermal Hall response due to Lorentz force. These results offer a clear experimental method to prove the existence of the deconfined spinons via a thermal transport phenomenon.
我们提出了一种绝缘量子磁体中热霍尔效应的理论,其中热流完全由诸如磁振子和自旋子等电荷中性物体携带。我们确定了两种不同类型的热霍尔响应。对于有序磁体,当晶格几何形状和基础磁有序满足某些条件时,磁振子的固有热霍尔效应就会出现。另一种类型则允许在自旋液体中出现,因为即使在零温度下也没有有序。对于这种情况,由于洛伦兹力,离域的自旋子会对热霍尔响应做出贡献。这些结果为通过热输运现象证明离域自旋子的存在提供了一种明确的实验方法。