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Aeronautical use of semiconductor lasers for short optical pulses

机译:在航空领域使用半导体激光器产生短光脉冲

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摘要

In this paper, we investigate the feasible schemes to generate periodic optical pulses of width between several picoseconds (ps) and tens ps. Gain-switched semiconductor laser diodes are shown to be more suitable for avionics applications than mode-locked laser diodes. In the experiment, we use a low-cost Fabry-Perot laser diode to generate short optical pulse streams. A simple optical injection-locking scheme is then used to reduce the timing jitter and frequency chirp in such laser diodes, which in turn can improve the transmission performance of the generated optical pulses. It is expected that the use of gain-switched semiconductor lasers can meet the requirement of high-speed airborne communication networks or ground supporting systems at airports. Moreover, we discuss the possibility of using the pulsed semiconductor lasers to generate millimetre-wave (mm-wave) signals for future applications to airborne high-resolution, mm-wave radars.
机译:在本文中,我们研究了生成宽度在几皮秒(ps)和数十ps之间的周期性光脉冲的可行方案。增益开关半导体激光二极管显示出比锁模激光二极管更适合于航空电子应用。在实验中,我们使用低成本的Fabry-Perot激光二极管来产生短的光脉冲流。然后,使用简单的光学注入锁定方案来减少此类激光二极管中的时序抖动和频率线性调频,进而可以改善所生成光脉冲的传输性能。预期使用增益切换半导体激光器可以满足机场的高速机载通信网络或地面支持系统的要求。此外,我们讨论了使用脉冲半导体激光器生成毫米波(mm-wave)信号的可能性,以便将来将其应用于机载高分辨率毫米波雷达。

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