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Pulsed Electrical Spin Injection into InGaAs Quantum Dots: Studies of the Electroluminescence Polarization Dynamics

机译:脉冲电旋转注射到InGaAs量子点:电致发光极化动力学的研究

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We present time-resolved studies of the spin polarization dynamics during and after initialization through pulsed electrical spin injection into InGaAs quantum dots embedded in a p-i-n-type spin-injection light-emitting diode. Experiments are performed with pulse widths in the nanosecond range and a time-resolved single photon counting setup is used to detect the subsequent electroluminescence. We find evidence that the achieved spin polarization shows an unexpected temporal behavior, attributed mainly to many-carrier and non-equilibrium effects in the device.
机译:我们通过脉冲电气旋转注射到嵌入于P-I-n型旋转喷射发光二极管中的脉冲电气旋转喷射过程中初始化和之后的自旋极化动力学的时间解决的研究。在纳秒范围内的脉冲宽度进行实验,并且使用时间分辨的单光子计数设置来检测随后的电致发光。我们发现证据表明,实现的自旋极化显示出意想不到的时间行为,主要归因于设备中的许多载波和非平衡效果。

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