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Electrical magnetochiral effect induced by chiral spin fluctuations

机译:手性自旋波动引起的电磁磁效应

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摘要

Chirality of matter can produce unique responses in optics, electricity and magnetism. In particular, magnetic crystals transmit their handedness to the magnetism via antisymmetric exchange interaction of relativistic origin, producing helical spin orders as well as their fluctuations. Here we report for a chiral magnet MnSi that chiral spin fluctuations manifest themselves in the electrical magnetochiral effect, i.e. the nonreciprocal and nonlinear response characterized by the electrical resistance depending on inner product of current and magnetic field. Prominent electrical magnetochiral signals emerge at specific temperature-magnetic field-pressure regions: in the paramagnetic phase just above the helical ordering temperature and in the partially-ordered topological spin state at low temperatures and high pressures, where thermal and quantum spin fluctuations are conspicuous in proximity of classical and quantum phase transitions, respectively. The finding of the asymmetric electron scattering by chiral spin fluctuations may explore new electromagnetic functionality in chiral magnets.
机译:物质的手性可以在光学,电和磁性方面产生独特的响应。特别地,磁性晶体通过相对论起源的反对称交换相互作用将其惯性传递给磁性,从而产生螺旋自旋顺序及其波动。在这里,我们报告了一种手性磁体MnSi,其手性自旋涨落在电磁场效应中表现出来,即以电流和磁场的内积为基础的电阻表征的不可逆和非线性响应。在特定的温度-磁场-压力区域会出现突出的电磁波信号:在顺磁性阶段,即在螺旋有序温度之上,在低温和高压下处于部分有序的拓扑自旋状态,其中热和量子自旋波动明显经典相变和量子相变的接近度。通过手性自旋涨落发现不对称电子散射可能会探索手性磁体中的新电磁功能。

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