On the ultra-fast ion induced demagnetization in thin films

T. Iliť, P. Valko, M. Drzik, M. Marton, M. Behúl, M. Vojs
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Abstract

In this paper we discuss ion-induced ultra fast demagnetization and present an approach for experimental investigation of the following magnetization dynamics. The effect, if confirmed, might have applications in spintronics, micro-scale power generation or communication and for basic research in the area of ion track formation as a mean to observe thermodynamics in ion tracks. The proposed approach lies in using magnetic antenna for detection of the field change induced by ion stopping and converting the field change to electrical signal. The approach was confirmed feasible, providing temporal resolution below 100ps in tests with other fast impulse heat source – a femtosecond laser. Presented experimental results and simulations based on ion-induced thermal spike model show a necessity to develop broadband antennas with high sensitivity and micro-scale dimensions together with specialized high frequency amplifier electronics, in order to allow observation of ultra-fast ion-induced demagnetization.
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超高速离子诱导薄膜退磁的研究
本文讨论了离子诱导的超快速退磁,并提出了一种后续磁化动力学实验研究的方法。如果得到证实,这一效应可能会应用于自旋电子学、微尺度发电或通信,以及离子轨道形成领域的基础研究,作为观察离子轨道热力学的一种手段。该方法是利用磁天线探测离子停止引起的场变化,并将场变化转化为电信号。该方法被证实是可行的,在使用其他快速脉冲热源——飞秒激光器的测试中,提供了低于100ps的时间分辨率。基于离子诱导热尖峰模型的实验结果和模拟表明,为了观察超高速离子诱导退磁,有必要开发高灵敏度和微尺度的宽带天线以及专门的高频放大器电子器件。
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