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Spin-disorder-induced angular anisotropy in polarized magnetic neutron scattering

Abstract: We experimentally report a hitherto unseen angular anisotropy in the polarized small-angle neutron scattering (SANS) cross section of a magnetically strongly inhomogeneous material. Based on an analytical prediction using micromagnetic theory, the difference between the spin-up and spin-down SANS cross sections is expected to show a spin-disorder-induced anisotropy. The effect is particularly pronounced in inhomogeneous magnetic materials, such as nanoporous ferromagnets, magnetic nanocomposites, or steels, which exhibit large nanoscale jumps in the saturation magnetization at internal pore-matrix or particle-matrix interfaces. Analysis of the experimental neutron data constitutes a method for determining the exchange-stiffness constant. Our results for the nuclear-magnetic interference terms contained in the polarized magnetic neutron scattering cross section might also be of relevance to other neutron techniques.

 Fuente: Physical Review Letters, 2025, 1335(19), 196706

 Editorial: American Physical Society

 Fecha de publicación: 01/11/2025

 Nº de páginas: 6

 Tipo de publicación: Artículo de Revista

 DOI: 10.1103/5yc2-pv4y

 ISSN: 0031-9007,1079-7114

 Proyecto español: PID2023-146448OB

 Url de la publicación: https://doi.org/10.1103/5yc2-pv4y

Autoría

TITOV, IVAN

BERSWEILER, MATHIAS

ADAMS, MICHAEL P.

SINAGA, EVELYN PRATAMI

RAI, VENUS

LIŠCÁK, ŠTEFAN

LAHR, MAX

SCHMIDT, THOMAS L.

KUCHKIN, VLADYSLAV M.

HALLER, ANDREAS

SUZUKI, KIYONORI

STEINKE, NINA-JULIANE

ALBA VENERO, DIEGO

HONECKER, DIRK

KOHLBRECHER, JOACHIM

MICHELS, ANDREAS