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首页> 外文期刊>Journal of Luminescence >Transient photoluminescence spectroscopy of spin injection dynamics in double quantum wells of diluted magnetic semiconductors
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Transient photoluminescence spectroscopy of spin injection dynamics in double quantum wells of diluted magnetic semiconductors

机译:稀磁半导体双量子阱中自旋注入动力学的瞬态光致发光光谱

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摘要

Dynamics of spin injection has been studied in double quantum wells (DQWs) composed of diluted magnetic and non-magnetic semiconductors. Picosecond-transient photoluminescence (PL) of excitons in the DQWs has been measured in magnetic field. In the Cd_(1-x)Mn_xTe-based DQWs, the PL intensity of the magnetic well (MW) excitons decays faster with decreasing barrier width from 12 to 2 nm. This provides the evidence for carrier tunneling from the MW to the non-magnetic well (NW) through the barrier layer. The degree of circular polarization in the transient PL of the NW exciton in magnetic field shows marked evidence for spin injection and rapid spin relaxation in the DQW system. In the Zn_(1-y)Mn_ySe-based DQWs, the degree of circle polarization in the NW exciton PL at 3 T shows a rise with a time constant of 400 ps, while the PL of the MW exciton decays within 50 ps. The observed result is interpreted by the individual spin injection for electrons and holes from the MW to the NW. The results of the transient PL of excitons in the DQWs are compared with the transient absorptions of excitons studied by the pump-and-probe spectroscopy.
机译:已经在由稀释的磁性和非磁性半导体组成的双量子阱(DQW)中研究了自旋注入的动力学。已在磁场中测量了DQW中激子的皮秒瞬态光致发光(PL)。在基于Cd_(1-x)Mn_xTe的DQW中,随着势垒宽度从12 nm减小到2 nm,磁阱(MW)激子的PL强度衰减更快。这为载流子从MW通过势垒层隧穿到非磁阱(NW)提供了证据。 NW激子在磁场中的瞬态PL中的圆极化程度显示了DQW系统中自旋注入和快速自旋弛豫的明显证据。在基于Zn_(1-y)Mn_ySe的DQW中,NW激子PL在3 T时的圆极化度显示出以400 ps的时间常数上升,而MW激子的PL在50 ps内衰减。观察到的结果可以通过对自MW到NW的电子和空穴进行自旋注入来解释。将DQW中激子的瞬态PL结果与通过泵浦-探针光谱法研究的激子的瞬态吸收进行了比较。

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