Litcius/Paper detail

Antiferromagnetic magnon pseudospin: Dynamics and diffusive transport

Akashdeep Kamra, Tobias Wimmer, Hans Huebl, Matthias Althammer

2020Physical review. B./Physical review. B34 citationsDOIOpen Access PDF

Abstract

We formulate a theoretical description of antiferromagnetic magnons and their transport in terms of an associated pseudospin. The need and strength of this formulation emerges from the antiferromagnetic eigenmodes being formed from superpositions of spin-up and -down magnons, depending on the material anisotropies. Consequently, a description analogous to that of spin-$\frac{1}{2}$ electrons is demonstrated while accounting for the bosonic nature of the antiferromagnetic eigenmodes. Introducing the concepts of a pseudospin chemical potential together with a pseudofield and relating magnon spin to pseudospin allows a consistent description of diffusive spin transport in antiferromagnetic insulators with any given anisotropies and interactions. Employing the formalism developed, we elucidate the general features of recent nonlocal spin transport experiments in antiferromagnetic insulators hosting magnons with different polarizations. The pseudospin formalism developed herein is valid for any pair of coupled bosons and is likely to be useful in other systems comprising interacting bosonic modes.

Topics & Concepts

MagnonAntiferromagnetismPhysicsCondensed matter physicsAnisotropyFormalism (music)BosonElectronSpin (aerodynamics)Quantum mechanicsFerromagnetismVisual artsArtThermodynamicsMusicalPhysics of Superconductivity and MagnetismMagnetic properties of thin filmsQuantum and electron transport phenomena
Antiferromagnetic magnon pseudospin: Dynamics and diffusive transport | Litcius