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  • Сверхбыстрый оптомагнитизм распознан. Успехи физических наук


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    Ultrafast optomagnetism

    A.M. Kalashnikova, R.V. Pisarev

    Ioffe Physical-Technical Institute, Russian Academy of Sciences, ul. Politekhnicheskaya 26,194021 St. Petersburg, Russian Federation

    E-mail: Kalashnikova@mail.ioffe.ru

    A.V. Kimel

    Radboud University Nijmegen, Institute for Molecules and Materials, Heyendaalseweg 135, 6525 AJ Nijmegen, The Netherlands;

    Moscow State Technical University of Radio Engineering, Electronics and Automation, prosp. Vernadskogo 78,119454 Moscow, Russian Federation

    In the last decade, a new area of research, referred to as femtomagnetism, has developed within the field of magnetism, which studies the excitation and control of magnetic medium dynamics on timescales comparable to or even much shorter than those of the spin-lattice, spin-orbit, and exchange interactions. Among many femtomagnetic processes studied by now, the optomagnetic interaction of femtosecond laser pulses with media is of particular interest. This interaction is based on nondissipative Raman-type mechanisms and enables coherent spin dynamics to be efficiently and selectively excited and its parameters to be controlled. This review considers the key features of ultrafast optomagnetic phenomena and how they relate to magneto-optical effects. A number of experimentally observed examples of ultrafast spin dynamics excited via optomagnetic inverse Faraday and Cotton-Mouton effects are considered, and their microscopical nature is discussed. An experimental example is given demonstrating that combining ultrafast optomagnetic phenomena with other laser-induced processes allows magnetization to be controlled on a picoseconds time scale.

    Keywords: ultrafast magnetic dynamics, femtosecond laser pulses, magnetically-ordered dielectrics, magneto-optics

    PACS numbers: 42.62.±b, 75.40.Gb, 75.50.Ee, 75.78.Jp, 78.20.Ls, 78.30.±j DOI: 10.3367/UFNr.0185.201510j.1064

    Bibliography — 82 references Received 15 July 2015

    Uspekhi Fizicheskikh Nauk 185 (10) 1064± 1076 (2015) Physics± Uspekhi 58 (10) (2015)
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