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Frequency comb offset dynamics of SESAM modelocked thin disk lasers

机译:SESAM Modelock薄盘激光器的频率梳偏移动力学

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摘要

We present a detailed study of the carrier-envelope offset (CEO) frequency dynamics of SESAM modelocked thin disk lasers (TDLs) pumped by kW-class highly transverse multimode pump diodes with a typical value of 200-300, and give guidelines for future frequency stabilization of multi-100-W oscillators. We demonstrate CEO frequency detection with > 30 dB signal-to-noise ratio with a resolution bandwidth of 100 kHz from a SESAM modelocked Yb:YAG TDL delivering 140 W average output power with 748-fs pulses at 7-MHz pulse repetition rate. We compare with a low-power CEO frequency stabilized Yb:CALGO TDL delivering 2.1 W with 77-fs pulses at 65 MHz. For both lasers, we perform a complete noise characterization, measure the relevant transfer functions (TFs) and compare them to theoretical models. The measured TFs are used to determine the propagation of the pump noise step-by-step through the system components. From the noise propagation analysis, we identify the relative intensity noise (RIN) of the pump diode as the main contribution to the CEO frequency noise. The resulting noise levels are not excessive and do not prevent CEO frequency stabilization. More importantly, the laser cavity dynamics are shown to play an essential role in the CEO frequency dynamics. The cavity TFs of the two lasers are very different which explains why at this point a tight CEO frequency lock can be obtained with the Yb:CALGO TDL but not with the Yb:YAG TDL. For CEO stabilization laser cavities should exhibit high damping of the relaxation oscillations by nonlinear intra-cavity elements, for example by operating a SESAM in the roll-over regime. Therefore the optimum SESAM operation point is a tradeoff between enough damping and avoiding multiple pulsing instabilities. Additional cavity components could be considered for supplementary damping independent of the SESAM operation point.
机译:我们将详细介绍由kW级典型值200-300的kW级高横向多模泵浦二极管泵浦的SESAM模型对接的薄盘激光器(TDL)的载波包络偏移(CEO)频率动力学,并为未来的频率提供指导稳定多100 W振荡器。我们展示了SESAM锁接式Yb:YAG TDL具有大于30 dB信噪比且分辨率带宽为100 kHz的CEO频率检测,该输出以7 MHz的脉冲重复频率提供了748 fs脉冲的140 W平均输出功率。我们将其与低功率CEO频率稳定的Yb:CALGO TDL进行了比较,它在65 MHz频率下以77 fs脉冲提供2.1 W功率。对于这两种激光器,我们都执行完整的噪声表征,测量相关的传递函数(TF),并将其与理论模型进行比较。测得的TF用于逐步确定泵噪声在系统组件中的传播。从噪声传播分析中,我们确定泵浦二极管的相对强度噪声(RIN)是对CEO频率噪声的主要贡献。产生的噪声水平不会过高,并且不会阻止CEO频率稳定。更重要的是,显示出激光腔动力学在CEO频率动力学中起着至关重要的作用。两个激光器的腔TF非常不同,这说明了为什么此时可以通过Yb:CALGO TDL而不是Yb:YAG TDL获得紧密的CEO频率锁定。对于CEO稳定化,激光腔应通过非线性腔内元件(例如通过在翻转状态下运行SESAM)表现出较高的张弛振荡阻尼。因此,最佳的SESAM工作点是在足够的阻尼和避免多个脉冲不稳定性之间进行权衡。可以考虑与SESAM操作点无关的其他腔体组件以进行补充阻尼。

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