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Monolithic InP master oscillator power amplifier for free space optical transmissions at 1.5 μm

机译:单片InP主振荡器功率放大器,用于1.5μm的自由空间光传输

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Interest in free space optical communications has increased in the last decades as it has many advantages over RF communications, especially for space-borne applications. However, high power, good spectral quality and beam quality are needed for efficient data transmission over long distances. To meet the need of having lightweight and compact laser sources with such qualities for FSO, semiconductor based MOPA systems (Master Oscillator Power Amplifier) have been developed. In this paper we present the experimental results and compare them to simulation results for a three-section monolithically integrated semiconductor Master Oscillator Power Amplifier emitting at 1.5 μm wavelengths, designed for LIDAR applications that can also be used for free space telecommunications. The MOPA includes a distributed feedback laser section for single mode light emission, an intermediate section for data modulation and a flared semiconductor optical amplifier section for power amplification, which allows us to generate a high power beam with good spectral characteristics. The impact of bias conditions of the different device sections and device design on performances have been studied. Single mode operation at 4 different wavelengths near 1550 nm is achieved for optical output power up to 400 mW in continuous-wave (CW) regime for a SOA current of 3 A and 800 mW for SOA pulsed operation for currents up to 5 A. Near-field profile is also analyzed for different modulator current. Small-signal dynamic response is measured and analyzed.
机译:在过去的几十年中,人们对自由空间光通信的兴趣有所增加,因为它比射频通信具有许多优势,尤其是对于航天应用。但是,需要高功率,良好的频谱质量和光束质量,才能实现长距离的有效数据传输。为了满足对于FSO具有这种质量的轻巧紧凑的激光源的需求,已经开发了基于半导体的MOPA系统(主振荡器功率放大器)。在本文中,我们介绍了实验结果,并将其与三节单片集成半导体主振荡器功率放大器(以1.5μm波长发射)的仿真结果进行了比较,这些放大器设计用于LIDAR应用,也可用于自由空间电信。 MOPA包括用于单模光发射的分布式反馈激光部分,用于数据调制的中间部分和用于功率放大的喇叭形半导体光放大器部分,这使我们能够产生具有良好光谱特性的高功率光束。研究了不同器件部分的偏置条件和器件设计对性能的影响。对于3A的SOA电流,在连续波(CW)方案中,高达400mW的光输出功率实现了在4种不同波长下接近1550 nm的单模工作;对于电流高达5A的SOA脉冲操作,实现了800mW的单模工作。还针对不同的调制器电流分析了磁场分布。对小信号动态响应进行了测量和分析。

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