The magnetic properties of the substituted spinel Mg1-x Mnx Mn2 O4, with 0≤x≤1, were investigated by means of superconducting quantum interference device (SQUID) magnetometry and μSR spectroscopy. A zero-field muon spin precession is detected in the two end members and the appearance of static internal fields is evidenced in all samples below a weakly x -dependent ordering temperature TN, different from that detected by macroscopic magnetization, TM. For x close to 1 a noncollinear spin structure as in Mn3 O4 is compatible with our low temperature results. At the opposite end (x close to zero) SQUID and μSR data suggest an antiferromagnetic arrangement of the Mn ions on the B spinel site. A nontrivial finding is that the uniform (q=0) component of the magnetic moment scales linearly with x. This evidence is discussed on the basis of the known magnetic structure of Mn3 O

Magnetism of Mg1-x Mnx O4 spinels by SQUID magnetometry and muon spin rotation spectroscopy

GHIGNA, PAOLO;MOZZATI, MARIA CRISTINA;Lascialfari Alessandro;MALAVASI, LORENZO;
2006-01-01

Abstract

The magnetic properties of the substituted spinel Mg1-x Mnx Mn2 O4, with 0≤x≤1, were investigated by means of superconducting quantum interference device (SQUID) magnetometry and μSR spectroscopy. A zero-field muon spin precession is detected in the two end members and the appearance of static internal fields is evidenced in all samples below a weakly x -dependent ordering temperature TN, different from that detected by macroscopic magnetization, TM. For x close to 1 a noncollinear spin structure as in Mn3 O4 is compatible with our low temperature results. At the opposite end (x close to zero) SQUID and μSR data suggest an antiferromagnetic arrangement of the Mn ions on the B spinel site. A nontrivial finding is that the uniform (q=0) component of the magnetic moment scales linearly with x. This evidence is discussed on the basis of the known magnetic structure of Mn3 O
2006
Applied Physics/Condensed Matter/Materials Science encompasses the resources of three related disciplines: Applied Physics, Condensed Matter Physics, and Materials Science. The applied physics resources are concerned with the applications of topics in condensed matter as well as optics, vacuum science, lasers, electronics, cryogenics, magnets and magnetism, acoustical physics and mechanics. The condensed matter physics resources are concerned with the study of the structure and the thermal, mechanical, electrical, magnetic and optical properties of condensed matter. They include superconductivity, surfaces, interfaces, thin films, dielectrics, ferroelectrics and semiconductors. The materials science resources are concerned with the physics and chemistry of materials and include ceramics, composites, alloys, metals and metallurgy, nanotechnology, nuclear materials, adhesion and adhesives. Resources dealing with polymeric materials are listed in the Organic Chemistry/Polymer Science category.
Esperti anonimi
Inglese
Internazionale
STAMPA
73
18
184402
6
Tematica Ex SIR: Magnetic Susceptibility (Classif. Ex SIR:Articoli su riviste ISI )
Spinels; Muons; Magnetism
no
9
info:eu-repo/semantics/article
262
Ghigna, Paolo; De Renzi, R.; Mozzati, MARIA CRISTINA; Lascialfari, Alessandro; Allodi, G.; Mazzoli, C.; Malavasi, Lorenzo; Azzoni Carlo, Bruno; Bimbi,...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/27368
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