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Frequency tuning of polarization oscillations in spin-lasers

机译:旋转激光器偏振振荡的频率调谐

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Polarization oscillations can be observed as resonant oscillations of the coupled spin-photon system in spin-controlled vertical-cavity surface-emitting lasers (spin-VCSELs). They are a reasonable measure of the polarization dynamics and provide insights to the polarization modulation bandwidth of these devices. These oscillations can be generated using pulsed spin injection and have proven to be much faster than the relaxation oscillations for the intensity dynamics under the same conditions. The oscillation frequency mainly depends on the cavity birefringence, which can be tuned by applying mechanical strain to the VCSEL structure. This provides a direct tool to considerably increase the polarization oscillation frequency and thus the modulation bandwidth. Following this approach we were able to experimentally tune the frequency over a range of 34 GHz. We demonstrated polarization oscillations in spin-VCSELs with frequencies up to 44 GHz recently, only limited by the used mechanical strain setup. By measuring the polarization oscillation frequency and the birefringence-governed mode splitting as a function of the applied strain simultaneously, we investigated the correlation between birefringence and polarization oscillations. Here we use an optimized and simplified mount, which potentially allows for larger strain values. The experimental findings are compared to numerical calculations based on the spin-flip model. Taking our previously reported record value of more than 250 GHz for the birefringence splitting in VCSEL cavities into account, this technique may pave the road toward high-speed polarization modulation in VCSELs for bit rates above 100 Gb/s.
机译:可以观察到偏振振动作为旋转控制的垂直腔表面发射激光器(旋转Vcsels)中耦合的旋转光子系统的谐振振动。它们是极化动力学的合理度量,并为这些设备的极化调制带宽提供了见解。可以使用脉冲旋转注射产生这些振荡,并且已经证明在相同条件下的强度动态的松弛振荡得多。振荡频率主要取决于空腔双折射,可以通过向VCSEL结构施加机械应变来调谐。这提供了一种直接工具,可显着增加偏振振荡频率,从而增加调制带宽。在这种方法之后,我们能够通过实验调整34 GHz范围内的频率。我们最近在频率高达44 GHz的频率下展示了旋转VCSEL的偏振振荡,仅受到二手机械应变设置的限制。通过同时测量偏振振荡频率和双折射治理模式分裂,我们研究了双折射和偏振振荡之间的相关性。在这里,我们使用优化和简化的坐骑,这可能允许更大的应变值。将实验结果与基于旋转翻转模型的数值计算进行比较。通过先前报告的记录值超过250GHz的双折射分裂考虑到,该技术可以在VCSELS中铺设朝向高于100 GB / s的比特率的高速偏振调制的道路。

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