Title :
Spin Polarized Electronic Transport in the Heusler Compound
Author :
Mesquita da Rosa, Fabiano ; Pureur, Paulo
Author_Institution :
Inst. de Fis., Univ. Fed. do Rio Grande do Sul, Porto Alegre, Brazil
Abstract :
This work presents an experimental study of the magnetotransport properties in the Heusler compound Pd2MnSn. The electrical resistivity, magnetoresistance and Hall effect were measured in the temperature interval between 2 K and 350 K in the presence of magnetic fields ranging between 0 and 9 Tesla. Magnetization measurements were made as a complement to the magnetotransport experiments. Effects of spin polarized electronic currents were evidenced in the magnetotransport experiments. In particular, the spin mixing term that describes the momentum transfer between the spin dependent subbands, plays an important role in the low temperature resistivity and magnetoresistance. On the other hand, the scattering processes due to spin disorder are dominant in the intermediate and high temperatures regions. The temperature dependent Hall resistivity in Pd2MnSn shows a minimum around T=50 K. An anomalous contribution to the Hall effect in this system was identified and discussed with basis on the k-space Berry phase theoretical predictions.
Keywords :
Hall effect; magnetisation; magnetoresistance; manganese alloys; palladium alloys; spin polarised transport; tin alloys; Hall effect; Heusler compound; Pd2MnSn; electrical resistivity; k-space Berry phase theoretical predictions; low temperature resistivity; magnetic fields; magnetic flux density 0 T to 9 T; magnetization measurements; magnetoresistance; magnetotransport properties; momentum transfer; scattering process; spin dependent subbands; spin disorder; spin mixing; spin polarized electronic currents; spin polarized electronic transport; temperature 2 K to 350 K; temperature dependent Hall resistivity; Compounds; Conductivity; Magnetic separation; Metals; Superconducting magnets; Temperature distribution; Temperature measurement; Anomalous Hall effect; Heusler compound; magnetotransport; spin mixing term; spin polarized transport; two current model;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2013.2261801