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Frequency Noise Characterization of a 25-GHz Diode-Pumped Mode-Locked Laser With Indirect Carrier-Envelope Offset Noise Assessment

机译:具有间接载波包络偏移噪声评估的25 GHz二极管泵浦锁模激光器的频率噪声特性

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摘要

We present a detailed frequency noise characterization of an ultrafast diode-pumped solid-state laser operating at 25-GHz repetition rate. The laser is based on the gain material Er:Yb:glass and operates at a wavelength of 1.55 μm. Using a beating measure-ment with an ultralow-noise continuous-wave laser in combination with a dedicated electrical scheme, we measured the frequency noise properties of an optical mode of the 25-GHz laser, of its repetition rate and indirectly of its carrier-envelope offset (CEO) signal without detecting the CEO frequency by the standard approach of nonlinear interferometry. We ob-served a strong anticorrelation between the frequency noise of the indirect CEO signal and of the repetition rate in our laser, leading to optical modes with a linewidth below 300 kHz in the free-running laser (at 100-ms integration time), much narrower than the individual contributions of the carrier envelope offset and repetition rate. We explain this behavior by the presence of a fixed point located close to the optical carrier in the laser spectrum for the dominant noise source.
机译:我们介绍了工作在25 GHz重复频率下的超快二极管泵浦固态激光器的详细频率噪声特性。激光器基于增益材料Er:Yb:glass,并在1.55μm的波长下工作。通过结合超低噪声连续波激光器的跳动测量和专门的电气方案,我们测量了25 GHz激光器的光学模式的频率噪声特性,其重复率以及间接地测量了其载波频率。包络线偏移(CEO)信号,而无需通过非线性干涉测量法的标准方法检测到CEO频率。我们观察到间接CEO信号的频率噪声与激光器的重复频率之间存在很强的反相关性,从而导致自由运行激光器(在100毫秒积分时间内)的线宽低于300 kHz的光学模式,比载波包络偏移和重复率的个体贡献要小得多。我们通过主要噪声源的激光光谱中靠近光学载波的固定点的存在来解释这种行为。

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