RENORMALIZATION EFFECTS IN THE DENSE NEUTRAL MAGNETOPLASMA OF QUANTUM-WELLS WITH 2 FILLED SUBBANDS

被引:4
作者
BAYER, M
DREMIN, A
FALLER, F
FORCHEL, A
KULAKOVSKII, VD
SHEPEL, BN
ANDERSSON, T
机构
[1] RUSSIAN ACAD SCI,INST SOLID STATE PHYS,CHERNOGOLOVKA 142432,RUSSIA
[2] CHALMERS UNIV TECHNOL,DEPT PHYS,S-41296 GOTHENBURG,SWEDEN
来源
PHYSICAL REVIEW B | 1994年 / 50卷 / 23期
关键词
D O I
10.1103/PhysRevB.50.17085
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Optical studies of the neutral electron-hole (eh) magnetoplasma in undoped InxGa1-xAsGaAs quantum wells (QW's) have been performed in magnetic fields up to 12 T. Three experimental situations were investigated over a wide range of plasma densities with subband splittings that were smaller, slightly larger, and much larger than the cyclotron energy. For dense (neh 5×1012 cm-2) and hot (T 200-300 K) photoexcited plasmas, the zeroth Landau-level (LL) transition energies of both sub-bands are in agreement with results of random-phase-approximation calculations neglecting excitonic effects. The stronger renormalization of the first subband is mainly due to the difference in the screened exchange contribution to the renormalization of the band gap. Excitonic corrections become important with decreasing density. They appear first near the Fermi edge and influence the initial or the final state of the optical transitions, depending on the filling of the corresponding LL's. In narrow QW's they lead to a much stronger renormalization of the zeroth LL in the second subband. The excitonic effects decrease with increasing QW width and decreasing magnetic field. At 4 T and a QW width of 30 nm they are negligible already at neh 5×1011 cm-2. In this case, the strong difference between the renormalization of the zeroth and the first LL observed at small plasma densities is connected with the much smaller binding energy of the 2s magnetoexcitons in the empty QW. © 1994 The American Physical Society.
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页码:17085 / 17092
页数:8
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