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Design principles of injection-locked semiconductor laser structures

机译:注射锁定半导体激光结构的设计原理

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Injection locking of semiconductor lasers has proven to be a versatile technique in a wide area of applications including Radio over Fiber (RoF) transmitters, optical comb generators, phase-arrayed antennas, mm-wave telescopes, etc. The injection-locked semiconductor laser acts as an optical amplifier, phase modulator, weak signal detector and optical filter. The stable locking and dynamic properties are strongly dependant on the cavity structure of these devices. A method based on semi-classical theory is presented for determining the effect of weak optical injection on the threshold gain and resonant frequency of complex-coupled DFB semiconductor lasers. This allows tailoring the locking bandwidth according to target application of the component and the establishment of design principles. The study is further complemented by large-signal time-domain simulations where structures for several applications are discussed.
机译:半导体激光器的注射锁定在广泛的应用中被证明是一种多功能技术,包括无线电(ROF)发射器,光学梳状发电机,相位阵列天线,MM波望远镜等。注射锁定的半导体激光器作用作为光学放大器,相位调制器,弱信号检测器和光学滤波器。稳定的锁定和动态特性强烈取决于这些器件的腔结构。提出了一种基于半经典理论的方法,用于确定弱光学喷射对复合耦合DFB半导体激光器的阈值增益和谐振频率的影响。这允许根据组件的目标应用和建立设计原理的目标应用来定制锁定带宽。该研究还通过大信号时域模拟互补,其中讨论了几种应用的结构。

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