Spin relaxation of Mn ions in (CdMn)Te/(CdMg)Te quantum wells under picosecond optical pumping
- 1 October 1997
- journal article
- Published by Pleiades Publishing Ltd in Journal of Experimental and Theoretical Physics
- Vol. 85 (4) , 784-796
- https://doi.org/10.1134/1.558366
Abstract
Spin relaxation of Mn ions in a Cd0.97Mn0.03Te/Cd0.75Mg0.25Te quantum well with photogenerated quasi-two-dimensional electron-hole plasma at liquid helium temperatures in an external magnetic field has been investigated. Heating of Mn ions by photogenerated carriers due to spin and energy exchange between the hot electron-hole plasma and Mn ions through direct sd-interaction between electron and Mn spins has been detected. This process has a short characteristic time of about 4 ns, which leads to appreciable heating of the Mn spin subsystem in about 0.5 ns. Even under uniform excitation of a dense electron-hole plasma, the Mn heating is spatially nonuniform, and leads to formation of spin domains in the quantum well magnetic subsystem. The relaxation time of spin domains after pulsed excitation is measured to be about 70 ns. Energy relaxation of excitons in the random exchange potential due to spin domains results from exciton diffusion in magnetic field B=14 T with a characteristic time of 1 to 4 ns. The relaxation time decreases with decreasing optical pump power, which indicates smaller dimensions of spin domains. In weak magnetic fields (B=2 T) a slow down in the exciton diffusion to 15 ns has been detected. This slow down is due to exciton binding to neutral donors (formation of bound excitons) and smaller spin domain amplitudes in low magnetic fields. The optically determined spin-lattice relaxation time of Mn ions in a magnetic field of 14 T is 270±10 and 16±7 ns for Mn concentrations of 3% and 12%, respectively.Keywords
This publication has 16 references indexed in Scilit:
- Hierarchy of relaxation times in the system of Mn-ion spins in photoexcited semimagnetic quantum wellsPhysical Review B, 1996
- Interparticle interaction in spin-aligned and spin-degenerate exciton systems and magnetoplasmas in II-VI quantum wellsPhysical Review B, 1996
- Magnetic relaxation studied by transient reflectivity inPhysical Review B, 1996
- Renormalization effects in dense neutral magnetoplasma photoexcited in CdTe/CdMnTe quantum wellsPhysica Status Solidi (b), 1995
- Spin-lattice relaxation at high magnetic fieldsPhysical Review Letters, 1992
- Diluted magnetic semiconductorsJournal of Applied Physics, 1988
- Spin-lattice relaxation in paramagnetic CdMnTeSolid State Communications, 1988
- Technical saturation and magnetization steps in diluted magnetic semiconductors: Predictions and observationsPhysical Review B, 1984
- Relation of magneto-optical properties of free excitons to spin alignment of Mn2+ ions in Cd1−xMnxTeSolid State Communications, 1979
- Paramagnetic Resonance of CdTe: Mn and CdS: MnPhysical Review B, 1960