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采用新型电子自旋共振技术研究单晶 Cu2OSeO3 中的磁电耦合。

Magnetoelectric coupling in single crystal Cu2OSeO3 studied by a novel electron spin resonance technique.

机构信息

Physik-Institut der Universität Zürich, Winterthurerstrasse 190, CH-8057 Zürich, Switzerland.

出版信息

Phys Rev Lett. 2012 Jun 15;108(24):247211. doi: 10.1103/PhysRevLett.108.247211. Epub 2012 Jun 13.

Abstract

The magnetoelectric (ME) coupling on spin-wave resonances in single-crystal Cu2OSeO3 was studied by a novel technique using electron spin resonance combined with electric field modulation. An external electric field E induces a magnetic field component μ0H(i)=γE along the applied magnetic field H with γ=0.7(1)  μT/(V/mm) at 10 K. The ME coupling strength γ is found to be temperature dependent and highly anisotropic. γ(T) nearly follows that of the spin susceptibility J(M)(T) and rapidly decreases above the Curie temperature T(c). The ratio γ/J(M) monotonically decreases with increasing temperature without an anomaly at T(c).

摘要

采用电子顺磁共振结合电场调制的新技术研究了单晶 Cu2OSeO3 中自旋波共振的磁电(ME)耦合。外电场 E 沿外加磁场 H 感应出磁场分量 μ0H(i)=γE,在 10 K 时 γ=0.7(1)  μT/(V/mm)。发现 ME 耦合强度 γ 随温度变化且各向异性很大。γ(T)几乎与自旋磁化率 J(M)(T)相同,并在居里温度 T(c)以上迅速下降。γ/J(M) 的比值随温度单调下降,在 T(c)处没有异常。

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