arXiv · 2103.13129
One-dimensional optomagnonic microcavities for selective excitation of perpendicular standing spin waves
Abstract
Here we propose a method of the excitation of perpendicular standing spin waves (PSSWs) of different orders in an optomagnonic microcavity by ultrashort laser pulses. The microcavity is formed by a magnetic dielectric film surrounded by dielectric non-magnetic Bragg mirrors. Optical cavity modes in the magnetic layer provide concentration and strongly non-uniform distribution of the optical power over the layer thickness and therefore induce the effective field of the inverse Faraday effect also spatially non-uniform. It results in excitation of PSSWs. PSSWs whose wavevector is closest to the wavevector characterizing distribution of the inverse Faraday effect field are excited most efficiently. Consequently, a key advantage of this approach is a selectivity of the PSSW excitation which allows to launch PSSWs of required orders only. All-optical operation of the optomagnonic cavities opens new possibilities for their applications for quantum technologies.
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V. A. Ozerov, D. A. Sylgacheva, M. A. Kozhaev, T. Mikhailova, V. N. Berzhansky, Mehri Hamidi, A. K. Zvezdin, V. I. Belotelov. 2021-03-24. One-dimensional optomagnonic microcavities for selective excitation of perpendicular standing spin waves. https://doi.org/10.1016/j.jmmm.2021.168167
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