Longitudinal spin transport in diluted magnetic semiconductor superlattices: The effect of the giant Zeeman splitting


Autoria(s): Chang K; Xia JB; Peeters FM
Data(s)

2002

Resumo

Longitudinal spin transport in diluted magnetic semiconductor superlattices is investigated theoretically. The longitudinal magnetoconductivity (MC) in such systems exhibits an oscillating behavior as function of an external magnetic field. In the weak magnetic-field region the giant Zeeman splitting plays a dominant role that leads to a large negative magnetoconductivity. In the strong magnetic-field region the MC exhibits deep dips with increasing magnetic field. The oscillating behavior is attributed to the interplay between the discrete Landau levels and the Fermi surface. The decrease of the MC at low magnetic field is caused by the s-d exchange interaction between the electron in the conduction band and the magnetic ions. The spin polarization increases rapidly with increasing magnetic field and the longitudinal current becomes spin polarized in strong magnetic field. The effect of spin-disorder scattering on MC is estimated numerically for low magnetic fields and found to be neglectible for our system.

Identificador

http://ir.semi.ac.cn/handle/172111/11926

http://www.irgrid.ac.cn/handle/1471x/64933

Idioma(s)

英语

Fonte

Chang K; Xia JB; Peeters FM .Longitudinal spin transport in diluted magnetic semiconductor superlattices: The effect of the giant Zeeman splitting ,PHYSICAL REVIEW B,2002,65 (15):Art.No.155211

Palavras-Chave #半导体物理 #ENVELOPE-FUNCTION APPROXIMATION #QUANTUM-WELLS #CONDUCTION ELECTRONS #BAND-STRUCTURE #SUPER-LATTICE #INJECTION #MAGNETORESISTANCE #HETEROSTRUCTURE #SCATTERING
Tipo

期刊论文