Coherent THz spin dynamics in antiferromagnets beyond the approximation of the Néel vector

Author:

Formisano F.1ORCID,Gareev T. T.1ORCID,Khusyainov D. I.1ORCID,Fedianin A. E.2ORCID,Dubrovin R. M.2ORCID,Syrnikov P. P.2,Afanasiev D.1ORCID,Pisarev R. V.2ORCID,Kalashnikova A. M.2ORCID,Mentink J. H.1ORCID,Kimel A. V.1ORCID

Affiliation:

1. Institute for Molecules and Materials, Radboud University 1 , 6525 AJ Nijmegen, The Netherlands

2. Ioffe Institute, Russian Academy of Sciences 2 , 194021 St. Petersburg, Russia

Abstract

Controlled generation of coherent spin waves with highest possible frequencies and shortest possible wavelengths is a cornerstone of spintronics and magnonics. Here, using Heisenberg antiferromagnet RbMnF3, we demonstrate that laser-induced THz spin dynamics corresponding to pairs of mutually coherent counter-propagating spin waves with the wavevectors up to the edge of the Brillouin zone cannot be understood in terms of magnetization and antiferromagnetic (Néel) vectors, conventionally used to describe spin waves. Instead, we propose to model such spin dynamics using the spin correlation function. We derive a quantum-mechanical equation of motion for the latter and emphasize that unlike the magnetization and antiferromagnetic vectors the spin correlations in antiferromagnets do not exhibit inertia.

Funder

HORIZON EUROPE European Research Council

Horizon 2020 Framework Program

Russian Science Foundation

Russian Foundation for Basic Research

Publisher

AIP Publishing

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