论文标题
具有元素特异性的泵送自旋极化的AC成分的直接成像
Direct imaging of the ac component of the pumped spin polarization with element specificity
论文作者
论文摘要
通过空间分辨率和元素选择性直接成像,在铁磁/非Ferromagnet异质结构中旋转泵送。扫描传输X射线显微镜中的时间分辨检测可以直接探测共掺杂的ZnO中AC自旋极化的空间范围,该ZnO是通过从相邻的薄或玻璃薄膜微泵上旋转泵送而产生的。比较两个成分的动态磁化成分的相对阶段是可能的,并且被认为是反相。粘合色合同中磁激发的分布与共掺杂的ZnO之间的相关性表明,横向没有一对一的相关性。观察到的分布相当复杂,但是在较大区域的整合清楚地表明,非铁磁铁中的自旋极化横向延伸到铁磁微带的区域之外。因此,观察结果通过局部自旋泵的效率和在几个微米范围内的非铁磁铁中的交流自旋极化的横向传播更好地解释。
Spin pumping in a ferromagnet/nonferromagnet heterostructure is directly imaged with spatial resolution as well as element selectivity. The time-resolved detection in scanning transmission x-ray microscopy allows to directly probe the spatial extent of the ac spin polarization in Co-doped ZnO which is generated by spin pumping from an adjacent permalloy microstrip. Comparing the relative phases of the dynamic magnetization component of the two constituents is possible and found to be antiphase. The correlation between the distribution of the magnetic excitation in the permalloy and the Co-doped ZnO reveals that laterally there is no one-to-one correlation. The observed distribution is rather complex, but integrating over larger areas clearly demonstrates that the spin polarization in the nonferromagnet extends laterally beyond the region of the ferromagnetic microstrip. Therefore the observations are better explained by a local spin pumping efficieny and a lateral propagation of the ac spin polarization in the nonferromagnet over the range of a few micrometers.