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Fourier-optical transverse mode selection in external-cavity broad-area lasers: experimental and numerical results

机译:外腔广域激光器中的傅立叶光学横模选择:实验和数值结果

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摘要

Broad-area lasers (BALs) with external Fourier-optical cavities with spatial filter for transverse mode selection have been studied experimentally and theoretically. The transverse mode structure of BALs is modeled using a three mirror cavity approach. The model accounts for gain saturation, carrier diffusion, and anti-guiding effects. Near- and far-field distributions are calculated and compared to experimental results. Transverse mode selection is achieved for BALs with a residual front facet reflectivity of 10% at low pump currents. For BALs having a very low front facet reflectivity of 0.001%, transverse modes can be selectively excited up to pump currents more than 200% above laser threshold. Calculations show that BALs having a 0.001%-antireflection coating with an external Fourier-optical cavity high above threshold can operate in a self-Q-switched-like mode with pulse durations of 2-4 ns and repetition rates of 100-200 MHz. Experimental results obtained with a hybrid integrated-optical external cavity for transverse mode selection are also presented.
机译:通过实验和理论研究了带有外部傅里叶光学腔,带有用于横向模式选择的空间滤波器的广域激光器(BAL)。使用三镜腔方法对BAL的横向模式结构进行建模。该模型考虑了增益饱和,载流子扩散和反导效应。计算近场和远场分布并将其与实验结果进行比较。对于在低泵浦电流下具有10%残留正面反射率的BAL,可以实现横向模式选择。对于具有非常低的0.001%正面反射率的BAL,可以有选择地激发横向模式,以泵浦电流超过激光器阈值200%以上。计算表明,具有0.001%减反射涂层且外部傅立叶光学腔高于阈值的BAL可以以自Q开关模式工作,脉冲持续时间为2-4 ns,重复频率为100-200 MHz。还介绍了使用混合集成光学外腔进行横向模式选择的实验结果。

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