Публікація:
Viscoelastic tensor and hydrodynamics of altermagnets

dc.contributor.authorHerasymchuk, Arsen
dc.contributor.authorGorbar, Eduard
dc.contributor.authorSukhachov, Pavlo
dc.date.accessioned2026-07-03T10:04:13Z
dc.date.issued2025-08-25
dc.description.abstractWe calculate the viscoelasticity tensor for altermagnets and formulate the corresponding hydrodynamic equations. The anisotropy of altermagnetic Fermi surfaces allows for additional terms in the viscoelasticity tensor and is manifested in transport properties, including electron and spin flows in a channel and nonlocal responses. In the channel geometry, the altermagnetic spin splitting leads to nontrivial spin density and spin current. Like the electric current, the spin current acquires a Poiseuille profile for no-slip boundary conditions. In nonlocal responses, the altermagnetic anisotropy affects current streamlines and electric potential distributions in the viscous regime. Our results provide signatures of the hydrodynamic transport regime in altermagnets, potentially facilitating its experimental studies and discovery.
dc.identifier.citationHERASYMCHUK, A. A.; GORBAR, E. V.; SUKHACHOV, P. O. Viscoelastic tensor and hydrodynamics of altermagnets. Physical Review B, 2025, 112.7: 075150.
dc.identifier.doi10.1103/3vw7-vrkj
dc.identifier.urihttps://dspace.bitp.kyiv.ua/handle/123456789/256
dc.language.isoen
dc.publisherPhysical Review B
dc.titleViscoelastic tensor and hydrodynamics of altermagnets
dc.typearticle
dspace.entity.typePublication

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