Appearance of inverse giant magnetoresistance in noncollinear magnetic systems

Appearance of inverse giant magnetoresistance in noncollinear magnetic systems was presented. It was shown for a simple d-band TB Hamiltonian that noncollinear magnetic configurations were contributed to large inverse giant magnetoresistance (IGMR) ratio. The outcome of band filling, magnetic moment...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Di Napoli, S., Milano, J., LLois, A.M., Dreyssé, H.
Formato: JOUR
Materias:
Acceso en línea:http://hdl.handle.net/20.500.12110/paper_03048853_v240_n1-3_p203_DiNapoli
Aporte de:
id todo:paper_03048853_v240_n1-3_p203_DiNapoli
record_format dspace
spelling todo:paper_03048853_v240_n1-3_p203_DiNapoli2023-10-03T15:21:05Z Appearance of inverse giant magnetoresistance in noncollinear magnetic systems Di Napoli, S. Milano, J. LLois, A.M. Dreyssé, H. Magnetic structure - noncollinear Magnetoresistance Transport properties Hamiltonians Magnetic moments Multilayers Transport properties Nonocollinear magnetic systems Giant magnetoresistance Appearance of inverse giant magnetoresistance in noncollinear magnetic systems was presented. It was shown for a simple d-band TB Hamiltonian that noncollinear magnetic configurations were contributed to large inverse giant magnetoresistance (IGMR) ratio. The outcome of band filling, magnetic moment and canting angle study were used to interpret the experimentally observed IGMR ratios on LaMn2Ge2. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_03048853_v240_n1-3_p203_DiNapoli
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Magnetic structure - noncollinear
Magnetoresistance
Transport properties
Hamiltonians
Magnetic moments
Multilayers
Transport properties
Nonocollinear magnetic systems
Giant magnetoresistance
spellingShingle Magnetic structure - noncollinear
Magnetoresistance
Transport properties
Hamiltonians
Magnetic moments
Multilayers
Transport properties
Nonocollinear magnetic systems
Giant magnetoresistance
Di Napoli, S.
Milano, J.
LLois, A.M.
Dreyssé, H.
Appearance of inverse giant magnetoresistance in noncollinear magnetic systems
topic_facet Magnetic structure - noncollinear
Magnetoresistance
Transport properties
Hamiltonians
Magnetic moments
Multilayers
Transport properties
Nonocollinear magnetic systems
Giant magnetoresistance
description Appearance of inverse giant magnetoresistance in noncollinear magnetic systems was presented. It was shown for a simple d-band TB Hamiltonian that noncollinear magnetic configurations were contributed to large inverse giant magnetoresistance (IGMR) ratio. The outcome of band filling, magnetic moment and canting angle study were used to interpret the experimentally observed IGMR ratios on LaMn2Ge2.
format JOUR
author Di Napoli, S.
Milano, J.
LLois, A.M.
Dreyssé, H.
author_facet Di Napoli, S.
Milano, J.
LLois, A.M.
Dreyssé, H.
author_sort Di Napoli, S.
title Appearance of inverse giant magnetoresistance in noncollinear magnetic systems
title_short Appearance of inverse giant magnetoresistance in noncollinear magnetic systems
title_full Appearance of inverse giant magnetoresistance in noncollinear magnetic systems
title_fullStr Appearance of inverse giant magnetoresistance in noncollinear magnetic systems
title_full_unstemmed Appearance of inverse giant magnetoresistance in noncollinear magnetic systems
title_sort appearance of inverse giant magnetoresistance in noncollinear magnetic systems
url http://hdl.handle.net/20.500.12110/paper_03048853_v240_n1-3_p203_DiNapoli
work_keys_str_mv AT dinapolis appearanceofinversegiantmagnetoresistanceinnoncollinearmagneticsystems
AT milanoj appearanceofinversegiantmagnetoresistanceinnoncollinearmagneticsystems
AT lloisam appearanceofinversegiantmagnetoresistanceinnoncollinearmagneticsystems
AT dreysseh appearanceofinversegiantmagnetoresistanceinnoncollinearmagneticsystems
_version_ 1782023642605944832