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Element-selective X-ray detected magnetic resonance: a novel application of synchrotron radiation

机译:元素选择性X射线检测的磁共振:同步加速器辐射的新应用

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摘要

X-ray detected magnetic resonance (XDMR) is a new element-selective spectroscopy in which X-ray magnetic circular dichroism is used to probe the resonant precession of spin and orbital magnetization components when a strong microwave pump field is applied perpendicularly to the static bias field. Experimental configurations suitable for detecting the very weak XDMR signal are compared. XDMR signatures were measured in yttrium iron garnet and related thin films on exciting not only the iron K-edge but also the yttrium at diamagnetic sites. These measurements are shown to yield unique information regarding the wide-angle precession of induced magnetization components involving either orbital p-projected densities of states at the iron sites, or spin polarized d-projected densities of states at the yttrium sites. Extending XDMR measurements into the millimeter wave range would make it possible to study paramagnetic systems routinely and investigate optical modes as well as acoustic modes in ferrimagnetic/antiferromagnetic systems.
机译:X射线检测磁共振(XDMR)是一种新的元素选择光谱,其中当强力微波泵浦电场垂直施加于静态偏置时,X射线磁性圆二色性用于探测自旋和轨道磁化分量的共振进动领域。比较了适合检测非常弱的XDMR信号的实验配置。在钇铁石榴石和相关薄膜上不仅在铁K边缘而且在抗磁性位点激发了钇,也测量了XDMR标记。这些测量结果显示出有关感应磁化分量的广角旋进的独特信息,涉及铁位置处的轨道p投影态密度或钇位置处的自旋极化d投影态密度。将XDMR测量范围扩展到毫米波范围将使常规研究顺磁系统以及研究铁磁/反铁磁系统中的光学模式以及声学模式成为可能。

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