Spin dynamics in the second subband of a quasi-two-dimensional system studied in a single-barrier heterostructure by time-resolved Kerr rotation


Autoria(s): Zhang, F; Zheng, HZ; Ji, Y; Li, GR
Data(s)

2008

Resumo

Spin dynamics in the first and second subbands have been examined simultaneously by time resolved Kerr rotation in a single-barrier heterostructure of a 500 nm thick GaAs absorption layer. By scanning the wavelengths of the probe and pump beams towards the short wavelength in the zero magnetic field, the spin coherent time T-2(1)* in the 1st subband E-1 decreases in accordance with the D'yakonov-Perel' (DP) spin decoherence mechanism. Meanwhile, the spin coherence time T-2(2)* in the 2nd subband E-2 remains very low at wavelengths longer than 810 nm, and then is dramatically enhanced afterwards. At 803 nm, T-2(2)* (450 ps) becomes ten times longer than T-2(1)* (50 ps). A new feature has been discovered at the wavelength of 811nm under the bias of -0.3V (807nm under the bias of -0.6V) that the spin coherence times (T-2(1)* and T-2(2)*) and the effective g* factors (vertical bar g*(E-1)vertical bar and vertical bar g*(E-2)vertical bar) all display a sudden change, presumably due to the "resonant" spin exchange coupling between two spin opposite bands. Copyright (C) EPLA, 2008.

National Basic Research Program of China 2006CB932801 2007CB924904 Special Research Programs of the Chinese Academy of Sciences The authors would like to thank Z. C. Niu for the sample growth. This work was in part supported by the National Basic Research Program of China No. 2006CB932801 and No. 2007CB924904, and also by Special Research Programs of the Chinese Academy of Sciences.

Identificador

http://ir.semi.ac.cn/handle/172111/6474

http://www.irgrid.ac.cn/handle/1471x/62975

Idioma(s)

英语

Fonte

Zhang, F ; Zheng, HZ ; Ji, Y ; Li, GR .Spin dynamics in the second subband of a quasi-two-dimensional system studied in a single-barrier heterostructure by time-resolved Kerr rotation ,EPL,2008 ,83(4): Art. No. 47007

Palavras-Chave #半导体物理 #QUANTUM-WELLS
Tipo

期刊论文