Dynamical antiferromagnets pump spins efficiently into adjacent conductors as ferromagnets. The high antiferromagnetic resonance frequencies represent a challenge for experimental detection, but magnetic fields can reduce these resonance frequencies. We compute the inverse spin Hall voltages resulting from dynamical spin excitations as a function of a magnetic field along the easy axis and the polarization of the driving AC magnetic field perpendicular to the easy axis. We consider the insulating antiferromagnets MnF$_2$, FeF$_2$, and NiO. Near the spin-flop transition, there is a significant enhancement of the DC spin pumping and inverse spin Hall voltage for the uniaxial antiferromagnets MnF$_2$ and FeF$_2$. In the biaxial NiO, the voltages are much weaker, and there is no spin-flop enhancement of the DC component.
翻译:高抗热磁共振频率对实验探测来说是一个挑战,但磁场可以减少这些共振频率。我们计算动态旋转振动的声波振动产生的孔压,这是磁场沿简单轴和驱动AC磁场的两极化作用而穿透简单轴的磁场。我们认为绝缘抗推磁网MnF$2$2美元、FeF$2$2美元和NiO。在旋式螺旋转换附近,DC的旋转泵和旋转大厅电压显著增强,用于无轴反纤维磁磁网 MnF$2美元和FeF$2美元。在双轴中,电磁场变弱得多,而DC组件没有旋转式增强。