首页> 外文会议>Conference on Semiconductor Lasers and Laser Dynamics; 20040427-20040430; Strasbourg; FR >Time-scales of polarization switching in different types of VCSELs
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Time-scales of polarization switching in different types of VCSELs

机译:不同类型VCSEL中极化切换的时间标度

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We present a study of the time-scale at which current induced polarization switching (PS) in VCSELs takes place. To this end, we measure the step and frequency response in three different types of PS VCSELs, showing that the dominating time-scales differ strongly from one VCSEL structure to another. We characterize the current-driven polarization modulation frequency response by measuring the critical modulation amplitude necessary to steadily force PS back and forth across the PS point as a function of the modulation frequency. The polarization step response is obtained by measuring the stochastic properties of the delay between the applied current step and the resulting change in the polarization, for various values of the initial and final current. For the studied proton-implanted VCSEL the polarization response is characterized by the thermal relaxation time. The measured polarization response of the air-post VCSEL also shows a clear signature of thermal effects, however PS is not at all inhibited at higher frequencies. In the oxide-confined device studied, there seems to be no thermal influence on the PS at all. Comparing the frequency response and the step response measurements done on the same device leads to similar conclusions and allows us to crosscheck our results. In all cases, we are able to reproduce our experimental findings using a rate-equation model, where PS is supposed to be induced by changes in the gain balance between the two polarization modes.
机译:我们介绍了VCSEL中电流感应极化切换(PS)发生的时间尺度的研究。为此,我们在三种不同类型的PS VCSEL中测量了阶跃和频率响应,表明从一个VCSEL结构到另一个VCSEL结构,主要的时标差异很大。我们通过测量必要的临界调制幅度来表征电流驱动的极化调制频率响应,该幅度对于稳定地迫使PS在PS点上来回往复移动是调制频率的函数。通过测量初始电流和最终电流的各种值,可以通过测量施加的电流阶跃与极化的最终变化之间的延迟的随机特性来获得极化阶跃响应。对于所研究的质子注入的VCSEL,偏振响应的特征在于热弛豫时间。测得的后置VCSEL的极化响应也显示出明显的热效应,但是在更高的频率下PS完全不受抑制。在研究的氧化物限制器件中,似乎对PS完全没有热影响。比较在同一设备上完成的频率响应和阶跃响应测量得出相似的结论,并使我们可以交叉检验我们的结果。在所有情况下,我们都可以使用速率方程模型重现我们的实验结果,其中PS被认为是由两种极化模式之间的增益平衡变化引起的。

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