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High-speed pulse train amplification in semiconductor optical amplifiers with optimized bias current

机译:具有优化偏置电流的半导体光放大器中的高速脉冲串放大

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摘要

In this paper, we have experimentally investigated the optimized bias current of semiconductor optical amplifiers (SOAs) to achieve high-speed input pulse train amplification with high gain and low distortion. Variations of the amplified output pulse duration with the amplifier bias currents have been analyzed and, compared to the input pulse duration, the amplified output pulse duration is broadened. As the SOA bias current decreases from the high level (larger than the saturated bias current) to the low level, the broadened pulse duration of the amplified output pulse initially decreases slowly and then rapidly. Based on the analysis, an optimized bias current of SOA for highspeed pulse train amplification is introduced. The relation between the SOA optimized bias current and the parameters of the input pulse train (pulse duration, power, and repetition rate) are experimentally studied. It is found that the larger the input pulse duration, the lower the input pulse power or a higher repetition rate can lead to a larger SOA optimized bias current, which corresponds to a larger optimized SOA gain. The effects of assist light injection and different amplifier temperatures on the SOA optimized bias current are studied and it is found that assist light injection can effectively increase the SOA optimized bias current while SOA has a lower optimized bias current at the temperature 20 degrees C than that at other temperatures. (C) 2017 Optical Society of America
机译:在本文中,我们已经通过实验研究了半导体光放大器(SOA)的优化偏置电流,以实现高增益和低失真的高速输入脉冲串放大。已经分析了通过放大器偏置电流的放大输出脉冲持续时间的变化,并与输入脉冲持续时间相比,放大的输出脉冲持续时间变宽。随着SOA偏置电流从高电平(大于饱和偏置电流)降低到低电平,放大输出脉冲的宽脉冲持续时间最初会缓慢降低,然后快速地降低。基于分析,介绍了高速脉冲串放大的SOA优化​​偏置电流。通过实验研究了SOA优化​​偏置电流与输入脉冲系(脉冲持续时间,功率和重复率)的参数之间的关系。发现输入脉冲持续时间越大,输入脉冲功率或更高的重复率可能导致更大的SOA优化​​偏置电流,这对应于更大的优化SOA增益。研究了辅助注射喷射和不同放大器温度对SOA优化​​偏置电流的影响,发现辅助注射注射可以有效地增加SOA优化​​偏置电流,而SOA在温度20摄氏度下具有较低的优化偏置电流。在其他温度。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第4期|共8页
  • 作者单位

    Univ Birmingham Sch Engn Birmingham B15 2TT W Midlands England;

    Univ Birmingham Sch Engn Birmingham B15 2TT W Midlands England;

    Univ Glasgow Sch Engn Glasgow G12 8LT Lanark Scotland;

    Univ Glasgow Sch Engn Glasgow G12 8LT Lanark Scotland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
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