H.D. Dulman, R.H. Pantell, et al.
Physical Review B
We have studied the spin-relaxation process in spin superlattice structures, both at zero field (no confining potential) and as a function of applied field (variable confining potential). Evidence of an unexpectedly long hole spin-relaxation time associated with the strain splitting of the valence band has been found. In addition, excitonic spin-relaxation times which are unaffected by the strength of the spin-dependent confining potential were observed. We demonstrate that for excitons, spin flip via the magnetic ion-carrier exchange interaction is not the dominant spin-relaxation mechanism, although it may play a more important role in the case of energetic hot carriers. © 1992 The American Physical Society.
H.D. Dulman, R.H. Pantell, et al.
Physical Review B
S.F. Fan, W.B. Yun, et al.
Proceedings of SPIE 1989
P. Martensson, R.M. Feenstra
Journal of Vacuum Science and Technology A: Vacuum, Surfaces and Films
J.V. Harzer, B. Hillebrands, et al.
Journal of Magnetism and Magnetic Materials