Cycloidal magnetic order in the compound IrMnSi


Autoria(s): Eriksson, T; Bergqvist, L; Burkert, T; Felton, S; Tellgren, R; Nordblad, P; Eriksson, O; Andersson, Y
Data(s)

24/05/2005

Resumo

<p>A new compound, IrMnSi, has been synthesized, and its crystal structure and magnetic properties have been investigated by means of neutron powder diffraction, magnetization measurements, and first-principles theory. The crystal structure is found to be of the TiNiSi type (ordered Co2P, space group Pnma). The Mn-projected electronic states are situated at the Fermi level, giving rise to metallic binding, whereas a certain degree of covalent character is observed for the chemical bond between the It and Si atoms. A cycloidal, i.e., noncollinear, magnetic structure was observed below 460 K, with the propagation vector q=[0,0,0.4530(5)] at 10 K. The magnetism is dominated by large moments on the Mn sites, 3.8 mu(B)/atom from neutron diffraction. First-principles theory reproduces the propagation vector of the experimental magnetic structure as well as the angles between the Mn moments. The calculations further result in a magnetic moment of 3.21 mu(B) for the Mn atoms, whereas the Ir and Si moments are negligible, in agreement with observations. A calculation that more directly incorporates electron-electron interactions improves the agreement between the theoretical and experimental magnetic moments. A band mechanism is suggested to explain the observed magnetic order.</p>

Formato

application/pdf

Identificador

http://pure.qub.ac.uk/portal/en/publications/cycloidal-magnetic-order-in-the-compound-irmnsi(fb97076c-4e83-4fc1-9542-e384c9a75467).html

http://dx.doi.org/10.1103/PhysRevB.71.174420

http://pure.qub.ac.uk/ws/files/2810885/Eriksson_2005_PhysRevB_71_174420.pdf

Idioma(s)

eng

Direitos

info:eu-repo/semantics/openAccess

Fonte

Eriksson , T , Bergqvist , L , Burkert , T , Felton , S , Tellgren , R , Nordblad , P , Eriksson , O & Andersson , Y 2005 , ' Cycloidal magnetic order in the compound IrMnSi ' Physical Review B (Condensed Matter) , vol 71 , no. 17 , 174420 . DOI: 10.1103/PhysRevB.71.174420

Tipo

article