Computational study of elastic waves generated by ultrafast demagnetization in fcc Ni

Author:

Korniienko I.1ORCID,Nieves P.2ORCID,Fraile A.3ORCID,Iglesias R.22ORCID,Legut D.14ORCID

Affiliation:

1. VŠB - Technical University of Ostrava

2. Universidad de Oviedo

3. Material Physics Center (MPC)/Centro de Física de Materiales(CFM) CSIC-UPV/EHU

4. Charles University

Abstract

Picosecond ultrasonics is a fast growing and advanced research field with broad application to the imaging and characterization of nanostructured materials as well as at a fundamental level. The aim of this paper is to provide an advanced 3D model based on atomistic spin-lattice simulations of the laser-induced elastic response in ferromagnetically ordered fcc Ni. The advantage of such an approach is the possibility to take into account the laser radiation interaction with the spins and thus characterize the magnetic contribution to the total stress. We analyze the atomic displacements caused both by the ultrafast thermal expansion of the crystal lattice and by the demagnetization process due to the heating of a certain area of the sample by an ultrashort laser pulse. Subsequently, an attempt is made to propose mathematical expressions for describing the corresponding total stress. The lattice and magnetic contributions have been evaluated, whereupon the former is found to be much greater than the latter. Published by the American Physical Society 2024

Funder

Ministerstvo Školství, Mládeže a Tělovýchovy

Ministerio de Universidades

Ministerio de Ciencia e Innovación

Diputación Foral de Gipuzkoa

Publisher

American Physical Society (APS)

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