首页> 外文期刊>The European physical journal, B. Condensed matter physics >Hot-electron transport and ultrafast magnetization dynamics in magnetic multilayers and nanostructures following femtosecond laser pulse excitation
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Hot-electron transport and ultrafast magnetization dynamics in magnetic multilayers and nanostructures following femtosecond laser pulse excitation

机译:磁性多层和纳米结构中的热电子传输和超快磁化动力学在飞秒激光脉冲励磁之后

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摘要

Understanding and controlling the magnetization dynamics on the femtosecond timescale is becoming indispensable both at the fundamental level and to develop future technological applications. While direct laser excitation of a ferromagnetic layer was commonly used during the past twenty years, laser induced hot-electrons femtosecond pulses and subsequent transport in magnetic multilayers has attracted a lot of attention. Indeed, replacing photons by hot-electrons offers complementary information to improve our understanding of ultrafast magnetization dynamics and to provide new possibilities for manipulating the magnetization in a thin layer on the femtosecond timescale. In this review, we report on experiments of hot-electrons induced ultrafast magnetic phenomena. We discuss the role of hot-electrons transport in the ultrafast loss of magnetization in magnetic single and multilayers and how it is exploited to trigger magnetization dynamics in magnetic multilayers.
机译:在Femtosecond Timescale上了解和控制磁化动力学在基本级别和发展未来的技术应用方面是不可或缺的。 虽然在过去的二十年中通常使用铁磁层的直接激光激发,但激光诱导的热电子飞秒脉冲和随后的磁性多层的运输引起了很多关注。 实际上,通过热电子更换光子提供互补信息,以改善我们对超快磁化动力学的理解,并提供用于操纵薄层在飞秒秒的薄层中的磁化的可能性。 在本综述中,我们报告了热电子诱导超快磁现象的实验。 我们讨论了热电子传输在磁单和多层的超快磁化中的作用以及如何利用磁性多层触发磁化动力学。

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