Nanotechnology. 2014 Jan 31;25(4):045303. doi: 10.1088/0957-4484/25/4/045303.
Spin torque nano-oscillators (STNO) are nanoscale devices that can convert a direct current into short wavelength spin wave excitations in a ferromagnetic layer. We show that arrays of STNO can be used to create directional spin wave radiation similarly to electromagnetic antennas. Combining STNO excitations with planar spin waves also creates interference patterns. We show that these interference patterns are static and have information on the wavelength and phase of the spin waves emitted from the STNO. We describe a means of actively controlling spin wave radiation patterns with the direct current flowing through STNO, which is useful in on-chip communication and information processing and could be a promising technique for studying short wavelength spin waves in different materials.
自旋扭矩纳米振荡器(STNO)是一种纳米级设备,可将直流电流转换为铁磁层中的短波长自旋波激发。我们表明,STNO 阵列可用于类似于电磁天线的创建定向自旋波辐射。将 STNO 激发与平面自旋波结合还会产生干涉图案。我们表明,这些干涉图案是静态的,并且包含有关从 STNO 发射的自旋波的波长和相位的信息。我们描述了一种使用流过 STNO 的直流电流来主动控制自旋波辐射模式的方法,这在片上通信和信息处理中很有用,并且可能是研究不同材料中短波长自旋波的有前途的技术。