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Power-scalable system of phase-locked single-mode diode lasers

机译:锁相单模二极管激光器的功率可扩展系统

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摘要

The direct use of diode lasers for high-power applications in material processing is limited to applications with relatively low beam quality and power density requirements. To achieve high beam quality one must use single-mode diode lasers, however with the drawback of relatively low optical output powers from these components. To realize a high-power system while conserving the high beam quality of the individual emitters requires coherent coupling of the emitters. Such a power-scalable system consisting of 19 slave lasers that are injection locked by one master laser has been built and investigated, with low-power diode lasers used for system demonstration. The optical power of the 19 injection-locked lasers is coupled into polarization-maintaining single-mode fibers and geometrically superimposed by a lens array and a focusing lens. The phase of each emitter is controlled by a simple electronic phasecontrol loop. The coherence of each slave laser is stabilized by computer control of the laser current and guarantees a stable degree of coherence of the whole system of 0.7. An enhancement factor of 13.2 in peak power density compared with that which was achievable with the incoherent superposition of the diode lasers was observed.
机译:二极管激光器直接用于材料加工中的高功率应用仅限于光束质量和功率密度要求相对较低的应用。为了获得高光束质量,必须使用单模二极管激光器,但是其缺点是来自这些组件的光输出功率相对较低。为了在保持单个发射器的高光束质量的同时实现大功率系统,需要发射器的相干耦合。已经构建并研究了这种由19个从激光器组成的功率可扩展系统,该一个从激光器被一个主激光器注入锁定,并使用低功率二极管激光器进行系统演示。 19个注入锁定激光器的光功率耦合到保持偏振的单模光纤中,并在几何上由透镜阵列和聚焦透镜叠加。每个发射器的相位由一个简单的电子相位控制回路控制。每个从激光器的相干性通过计算机控制激光电流来稳定,并确保整个系统的相干度稳定为0.7。观察到峰值功率密度的增强因子为13.2,与二极管激光器非相干叠加所能达到的增强因子相比。

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