Defect-induced spin textures in magnetic solids

Fuente: arXiv
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Autori principali: Zhitomirsky, M. E., Shenoy, Vijay B., Moessner, Roderich
Natura: Preprint
Pubblicazione: 2024
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author Zhitomirsky, M. E.
Shenoy, Vijay B.
Moessner, Roderich
author_facet Zhitomirsky, M. E.
Shenoy, Vijay B.
Moessner, Roderich
contents Vacancy defects in isotropic noncollinear antiferromagnets produce long-range spin textures. By developing a "magnetic elasticity theory", we demonstrate that a vacancy-induced readjustment in the spin configuration decays algebraically with distance. The power law exponent depends on the multipole moment of a local spin deformation, which in turn is determined by the lattice symmetry and an equilibrium spin configuration in the absence of defects. The role of these two factors is highlighted for the J1-J2 Heisenberg model on a kagome lattice. A vacancy in this model generates spin deformations that decay as 1/r^2 for the q=0 ground state and as a 1/r for the sqrt{3} x sqrt{3} magnetic structure. The analytic conclusions are confirmed by extensive numerical simulations. We also compute the fractional magnetic moments associated with vacancies and other lattice defects. Our results shed light on relative fragility of different magnetic structures with respect to spin glass formation at higher doping levels.
format Preprint
id arxiv_https___arxiv_org_abs_2412_01662
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Defect-induced spin textures in magnetic solids
Zhitomirsky, M. E.
Shenoy, Vijay B.
Moessner, Roderich
Strongly Correlated Electrons
Materials Science
Vacancy defects in isotropic noncollinear antiferromagnets produce long-range spin textures. By developing a "magnetic elasticity theory", we demonstrate that a vacancy-induced readjustment in the spin configuration decays algebraically with distance. The power law exponent depends on the multipole moment of a local spin deformation, which in turn is determined by the lattice symmetry and an equilibrium spin configuration in the absence of defects. The role of these two factors is highlighted for the J1-J2 Heisenberg model on a kagome lattice. A vacancy in this model generates spin deformations that decay as 1/r^2 for the q=0 ground state and as a 1/r for the sqrt{3} x sqrt{3} magnetic structure. The analytic conclusions are confirmed by extensive numerical simulations. We also compute the fractional magnetic moments associated with vacancies and other lattice defects. Our results shed light on relative fragility of different magnetic structures with respect to spin glass formation at higher doping levels.
title Defect-induced spin textures in magnetic solids
topic Strongly Correlated Electrons
Materials Science
url https://arxiv.org/abs/2412.01662