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Spin-polarized photoelectron sources and spin-dependent free-electron injection through ultrathin ferromagnetic layers

机译:通过超薄铁磁层的自旋极化光电子源和自旋相关的自由电子注入

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The development of efficient spin-polarized electron sources, the improvement of electron spin polarimeters, and the progress in the fabrication of magnetic nanostructures and hybrid ferromagnet/semiconductor structures open up a wide field of investigation involving spin-dependent electron interactions in magnetic systems. This paper reviews the state of the art concerning spin-polarized electron sources based on semiconductor photocathodes. Their use is illustrated by the example of a new spin-dependent transmission experiment where a low-energy free-electron beam crosses a free-standing ferromagnetic thin film. It is shown that the transmission spin asymmetry reaches high values at very low primary electron energy. Possible applications of these spin-filter structures as compact and performant spin detectors are discussed, as well as perspectives for spin sensitive probes.
机译:高效自旋极化电子源的发展,电子自旋旋光仪的改进以及磁性纳米结构和混合铁磁体/半导体结构的制造进展为涉及磁性系统中自旋相关电子相互作用的研究开辟了广阔的领域。本文回顾了有关基于半导体光电阴极的自旋极化电子源的最新技术。一个新的自旋相关传输实验的例子说明了它们的使用,其中低能自由电子束穿过一个独立的铁磁薄膜。结果表明,在非常低的一次电子能量下,传输自旋不对称性达到很高的值。讨论了这些自旋滤波器结构作为紧凑型和高性能自旋检测器的可能应用,以及自旋敏感探头的前景。

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