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Temperature stable oxide-confined 850 nm VCSELs operating at bit rates up to 25 Gbit/s at 150°C

机译:温度稳定的氧化物限制型850 nm VCSEL在150°C下以高达25 Gbit / s的比特率运行

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New applications in industrial, automotive and datacom applications require vertical-cavity surface-emitting lasers (VCSELs) operating at very high ambient temperatures at ultrahigh speed. We discuss issues related to high temperature performance of the VCSELs including temperature response and spectral properties. The influence of the gain-to-cavity wavelength detuning on temperature performance and spectral width of the VCSELs is discussed. Performance of the oxide-confined 850 nm VCSELs with increased temperature stability capable of operating at bit rates up to 25 Gbit/s at heat sink temperature of 150°C and 35Gbit/s at 130°C. Furthermore, opposite to previous studies of VCSELs with large gain-to-cavity detuning, which demonstrated strongly increased spectral width and a strong redistribution of the mode intensities upon current increase. VCSELs demonstrated in this work show good reproducibility of a narrow spectrum in a wide range of currents and temperatures. Such performance strongly improves the transmission distance over multi-mode fiber and can reduce mode partition noise during high speed operation.
机译:工业,汽车和数据通信应用中的新应用要求垂直腔表面发射激光器(VCSEL)在非常高的环境温度下以超高速工作。我们讨论了与VCSEL的高温性能有关的问题,包括温度响应和光谱特性。讨论了腔腔波长失谐对VCSEL的温度性能和光谱宽度的影响。具有氧化物限制的850 nm VCSEL的性能具有增强的温度稳定性,能够在150°C的散热器温度和130°C的35Gbit / s的比特率下高达25 Gbit / s的速率运行。此外,与先前的具有较大增益到腔失谐的VCSEL的研究相反,该研究表明,随着电流的增加,光谱宽度会大大增加,并且模态强度也会发生强烈的重新分布。这项工作中演示的VCSEL在很宽的电流和温度范围内均显示出窄光谱的良好再现性。这种性能极大地改善了多模光纤上的传输距离,并可以减少高速操作期间的模式分区噪声。

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