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Semiconductor-based low-noise 100 MHz chirped pulse laser source based on a theta cavity design with an intra-cavity etalon and long-term stabilization

机译:基于θ腔设计的基于半导体的低噪声100 MHz pulse脉冲激光源,具有腔内标准具和长期稳定性

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This work discusses the development of a frequency chirped, low repetition rate, semiconductor based mode-locked laser having reduced noise over previous demonstrations. Specifically, we present a major upgrade on the 100 MHz harmonically mode-locked Theta (Θ) laser cavity design in the form of the introduction of an intra-cavity fiberized Fabry-Perot etalon. The initial demonstration of the Theta cavity design offered improved energy per pulse and a linearly chirped pulse output compared to conventional cavity designs. Nonetheless, it suffered from pulse-to-pulse timing and energy noise. The noisy operation arises from the harmonic nature of the laser. To mitigate this effect we have inserted a fiberized etalon within the laser cavity. The intra-cavity etalon stores and inter-mixes the pulses of the harmonically mode-locked laser, as well as enforces lasing on a single optical mode-set from the multiple interleaved sets supported by the mode-locked laser due to its harmonic nature. This leads to the generation of a stable optical frequency comb with 100 MHz spacing and the suppression of the RF super-mode noise spurs, which results in a reduction of the laser noise. Due to fiber length drift in both the fiberized laser cavity and the fiberized etalon, a long-term stabilization scheme is necessary. An intra-cavity Hansch - Couillaud scheme is employed. The laser outputs chirped pulses with 10 nm of bandwidth. This work provides an in depth analysis of both the development of the Theta cavity with the intra-cavity etalon and the performance of the developed laser system.
机译:这项工作讨论了频率chi,低重复频率,基于半导体的锁模激光器的开发,该激光器与以前的演示相比具有更低的噪声。具体而言,我们以腔内纤维化Fabry-Perot标准具的形式,对100 MHz谐波锁模Theta(Θ)激光腔设计进行了重大升级。与传统的腔体设计相比,Theta腔体设计的最初演示提供了更高的每脉冲能量和线性chi脉冲输出。尽管如此,它还是受到了脉冲间定时和能量噪声的困扰。噪声操作源自激光器的谐波特性。为了减轻这种影响,我们在激光腔内插入了一个纤维化的标准具。腔内标准具存储并互混谐波锁模激光器的脉冲,并由于锁模激光器的谐波特性而对锁模激光器支持的多个交错组的单个光学模式集进行激光发射。这导致产生具有100 MHz间隔的稳定光频率梳,并抑制RF超模噪声杂散,从而降低了激光噪声。由于光纤长度在光纤激光器腔体和标准具中的漂移,因此需要长期的稳定方案。采用腔内Hansch-Couillaud方案。激光输出带宽为10 nm的chi脉冲。这项工作提供了对带有腔内标准具的Theta腔的发展以及所开发的激光系统的性能的深入分析。

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