Logo image
Light-induced orbital magnetism in metals via inverse Faraday effect
Journal article   Peer reviewed

Light-induced orbital magnetism in metals via inverse Faraday effect

Priya Sharma and Alexander Balatsky
Physical review. B, Vol.110(9), 094302
03/09/2024

Abstract

Materials Science, Multidisciplinary Physics, Applied Physics, Condensed Matter Science & Technology Materials Science Physical Sciences Physics Technology
We present a microscopic calculation of the inverse Faraday effect in metals. We derive a static local magnetic moment induced on the application of high-frequency light, using the Eilenberger formulation of quasiclassical theory. We include the effect of disorder and formulate a theory applicable across the entire temperature range, in the absence of external applied fields. For light-induced electric fields of amplitude '100 kV/cm, the induced fields are large '0.1 T for metallic Nb. The predictions of our theory agree with recent experimental and 134439 (2018)]. An extension of this approach to superconductors would open a new route of inducing orbital magnetic field and potentially vortices in superconductors.
url
https://doi.org/10.1103/PhysRevB.110.094302View
Published (Version of record) Open CC BY V4.0

Metrics

Details

Logo image

Usage Policy