作者
TA Ostler, J Barker, RFL Evans, RW Chantrell, U Atxitia, O Chubykalo-Fesenko, S El Moussaoui, LBPJ Le Guyader, E Mengotti, LJ Heyderman, F Nolting, A Tsukamoto, A Itoh, D Afanasiev, BA Ivanov, AM Kalashnikova, K Vahaplar, J Mentink, Andrei Kirilyuk, Th Rasing, AV Kimel
发表日期
2012/1
期刊
Nature communications
卷号
3
期号
1
页码范围
666
出版商
Nature Publishing Group UK
简介
The question of how, and how fast, magnetization can be reversed is a topic of great practical interest for the manipulation and storage of magnetic information. It is generally accepted that magnetization reversal should be driven by a stimulus represented by time-non-invariant vectors such as a magnetic field, spin-polarized electric current, or cross-product of two oscillating electric fields. However, until now it has been generally assumed that heating alone, not represented as a vector at all, cannot result in a deterministic reversal of magnetization, although it may assist this process. Here we show numerically and demonstrate experimentally a novel mechanism of deterministic magnetization reversal in a ferrimagnet driven by an ultrafast heating of the medium resulting from the absorption of a sub-picosecond laser pulse without the presence of a magnetic field.
引用总数
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学术搜索中的文章
TA Ostler, J Barker, RFL Evans, RW Chantrell, U Atxitia… - Nature communications, 2012