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Ultrafast circular polarization oscillations in spin-polarized vertical-cavity surface-emitting laser devices

机译:自旋偏振垂直腔面发射激光器中的超快圆偏振振荡

摘要

Spin-polarized lasers offer new encouraging possibilities for future devices. We investigate the polarization dynamics of electrically pumped vertical-cavity surface-emitting lasers after additional spin injection at room temperature. We find that the circular polarization degree exhibits faster dynamics than the emitted light. Moreover the experimental results demonstrate a strongly damped ultrafast circular polarization oscillation due to spin injection with an oscillation frequency of approximately 11GHz depending on the birefringence in the VCSEL device. We compare our experimental results with theoretical calculations based on rate-equations. This allows us to predict undamped long persisting ultrafast polarization oscillations, which reveal the potential of spin-VCSELs for ultrafast modulation applications.
机译:自旋偏振激光器为未来的设备提供了新的令人鼓舞的可能性。我们在室温下进行额外的自旋注入后,研究了电泵浦垂直腔表面发射激光器的偏振动力学。我们发现圆偏振度比发射的光展现出更快的动力学。此外,实验结果表明,由于自旋注入而产生的强阻尼超快圆偏振振荡取决于VCSEL器件中的双折射,其振荡频率约为11GHz。我们将实验结果与基于速率方程的理论计算进行比较。这使我们能够预测无阻尼的,持续时间长的超快极化振荡,这揭示了自旋VCSEL在超快调制应用中的潜力。

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