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Spin induced gigahertz polarization oscillations in vertical-cavity surface-emitting laser devices

机译:垂直腔面发射激光器中自旋引起的千兆赫兹偏振振荡

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Spin-controlled vertical-cavity surface-emitting lasers (VCSELs) have been intensively studied in recent years because of the low threshold feasibility and the nonlinearity above threshold, which make spin-VCSELs very promising for spintronic devices. Here we investigate the circular polarization dynamics of VCSELs on a picosecond time scale after pulsed optical spin injection at room temperature. A hybrid excitation technique combining continuous-wave (cw) unpolarized electrical excitation slightly above threshold and pulsed polarized optical excitation is applied. The experimental results demonstrate ultrafast circular polarization oscillations with a frequency of about 11 GHz. The oscillations last inside the first undulation of the intensity relaxation oscillations. Via theoretical calculations based on a rate equation model we analyze these oscillations as well as the underlying physical mechanisms.
机译:由于低阈值可行性和阈值以上的非线性,近年来对自旋控制垂直腔面发射激光器(VCSEL)进行了深入研究,这使自旋VCSEL非常适合自旋电子器件。在这里,我们研究了在室温下进行脉冲光学自旋注入后,在皮秒级的时间范围内,VCSEL的圆偏振动力学。应用了一种混合激励技术,该技术结合了略高于阈值的连续波(cw)非偏振电激励和脉冲偏振光激励。实验结果表明,超快圆极化振荡的频率约为11 GHz。振荡持续到强度弛豫振荡的第一个波动内。通过基于速率方程模型的理论计算,我们分析了这些振荡以及潜在的物理机制。

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