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Harmonic and intermodulation distortion in oxide-confined vertical-cavity surface-emitting lasers

机译:氧化物限制的垂直腔面发射激光器中的谐波和互调畸变

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摘要

The nonlinear distortion in single and multimode vertical-cavity surface-emitting lasers (VCSELs) under analog modulation was studied both numerically and experimentally. A quasi-three-dimensional time domain model was used to simulate the second-order harmonic and third-order intermodulation distortion in typical GaAs-based oxide-confined VCSELs emitting at 850 nm. The model is based on fundamental interrelated physical processes involving the optical fields and carrier and temperature distributions with no parameter fitting to experimental results. The simulations show that for low modulation frequencies (<2 GHz), the distortion is strongly affected by spatial hole burning, and at higher modulation frequencies, the distortion is dominated by the relaxation oscillation effects. At intermediate frequencies the two effects often cancel, resulting in a significantly lower distortion. Due to mode competition, the multimode VCSEL shows a more unpredictable behavior in the low frequency region. Moreover, in this region, the distortion of an individual mode can be much higher than the distortion of the total output power demonstrating the importance of avoiding mode-selective losses in multimode applications. The general trends observed in the simulations are well reproduced in the experiments.
机译:数值和实验研究了单模和多模垂直腔面发射激光器(VCSEL)在模拟调制下的非线性畸变。准三维时域模型用于模拟在850 nm处发射的典型基于GaAs的氧化物受限VCSEL中的二阶谐波和三阶互调失真。该模型基于涉及光场,载流子和温度分布的基本相互关联的物理过程,而没有适合实验结果的参数。仿真表明,对于低调制频率(<2 GHz),失真受空间空穴燃烧的强烈影响,而在较高调制频率下,失真受弛豫振荡效应支配。在中频处,这两种效应通常会抵消,从而导致失真大大降低。由于模式竞争,多模式VCSEL在低频区域表现出更加不可预测的行为。此外,在该区域中,单个模式的失真可能比总输出功率的失真高得多,这表明了避免多模式应用中的模式选择损耗的重要性。在模拟中观察到的总体趋势在实验中得到了很好的再现。

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