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基于主振荡功率放大结构的自由运转掺镱钾钨酸盐双梳光频梳振荡器。

Free-running Yb:KYW dual-comb oscillator in a MOPA architecture.

出版信息

Opt Express. 2023 Feb 13;31(4):6633-6648. doi: 10.1364/OE.482747.

Abstract

Single-cavity dual-combs comprise a rapidly emerging technology platform suitable for a wide range of applications like optical ranging, equivalent time sampling, and spectroscopy. However, it remains a challenging task to develop a dual-comb system that exhibits low relative frequency fluctuations to allow for comb line resolved measurements, while simultaneously offering high average power and short pulse durations. Here we combine a passively cooled and compact dual-comb solid-state oscillator with a pair of core-pumped Yb-fiber-based amplifiers in a master-oscillator power-amplifier (MOPA) architecture. The Yb:KYW oscillator operates at 250 MHz and uses polarization multiplexing for dual-comb generation. To the best of our knowledge, this is the first demonstration of a single-cavity dual-comb based on this gain material. As the pulse timing characteristics inherent to the oscillator are preserved in the amplification process, the proposed hybrid approach leverages the benefit of both the ultra-low noise solid-state laser and the advantages inherent to fiber amplifier systems such as straight-forward power scaling. The amplifier is optimized for minimal pulse broadening while still providing significant amplification and spectral broadening. We obtain around 1 W of power per output beam with pulses then compressed down to sub-90 fs using a simple grating compressor, while no pre-chirping or other dispersion management is needed. The full-width half-maximum (FWHM) of the radio-frequency comb teeth is 700 Hz for a measurement duration of 100 ms, which is much less than the typical repetition rate difference, making this passively stable source well-suited for indefinite coherent signal averaging via computational phase tracking.

摘要

单腔双梳系统是一种新兴的技术平台,适用于多种应用,如光学测距、等效时间采样和光谱学。然而,开发一种具有低相对频率波动的双梳系统仍然是一项具有挑战性的任务,这种系统既能实现梳线分辨测量,又能提供高平均功率和短脉冲持续时间。在这里,我们结合了一个被动冷却和紧凑的双梳固态振荡器,以及一对芯泵浦 Yb 光纤放大器,构成了主振荡器功率放大器(MOPA)架构。Yb:KYW 振荡器的工作频率为 250MHz,并使用偏振复用进行双梳产生。据我们所知,这是首次在这种增益材料上展示基于单腔的双梳系统。由于振荡器固有的脉冲定时特性在放大过程中得以保留,因此所提出的混合方法利用了超低噪声固态激光器的优势以及光纤放大器系统固有的优势,如简单的功率扩展。放大器经过优化,可将脉冲展宽最小化,同时仍能提供显著的放大和光谱展宽。我们获得了每输出光束约 1W 的功率,然后使用简单的光栅压缩器将脉冲压缩到亚 90fs,而无需预啁啾或其他色散管理。在 100ms 的测量时间内,射频梳齿的半峰全宽(FWHM)为 700Hz,远小于典型的重复率差,使得这种无源稳定源非常适合通过计算相位跟踪进行无限期相干信号平均。

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