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飞秒激光激发驱动铁石榴石纳米级介电薄膜中的高频驻波自旋波

Femtosecond Laser-Excitation-Driven High Frequency Standing Spin Waves in Nanoscale Dielectric Thin Films of Iron Garnets.

作者信息

Deb Marwan, Popova Elena, Hehn Michel, Keller Niels, Petit-Watelot Sébastien, Bargheer Matias, Mangin Stéphane, Malinowski Gregory

机构信息

Institut Jean Lamour (IJL), CNRS UMR 7198, Université de Lorraine, 54506 Vandœuvre-lès-Nancy, France.

Institut für Physik und Astronomie, Universität Potsdam, Karl-Liebknecht-Str. 24-25, 14476 Potsdam, Germany.

出版信息

Phys Rev Lett. 2019 Jul 12;123(2):027202. doi: 10.1103/PhysRevLett.123.027202.

Abstract

We demonstrate that femtosecond laser pulses allow triggering high-frequency standing spin-wave modes in nanoscale thin films of a bismuth-substituted yttrium iron garnet. By varying the strength of the external magnetic field, we prove that two distinct branches of the dispersion relation are excited for all the modes. This is reflected in particular at a very weak magnetic field (∼33  mT) by a spin dynamics with a frequency up to 15 GHz, which is 15 times higher than the one associated with the ferromagnetic resonance mode. We argue that this phenomenon is triggered by ultrafast changes of the magnetic anisotropy via laser excitation of incoherent and coherent phonons. These findings open exciting prospects for ultrafast photo magnonics.

摘要

我们证明,飞秒激光脉冲能够在铋取代钇铁石榴石的纳米级薄膜中触发高频驻波自旋波模式。通过改变外部磁场的强度,我们证明,对于所有模式,色散关系的两个不同分支都会被激发。这尤其体现在非常弱的磁场(约33 mT)下,自旋动力学的频率高达15 GHz,这比与铁磁共振模式相关的频率高15倍。我们认为,这种现象是由非相干和相干声子的激光激发导致的磁各向异性的超快变化所触发的。这些发现为超快光磁子学开辟了令人兴奋的前景。

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