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An etalon stabilized 10-GHz comb source using a slab coupled waveguide amplifier

机译:使用平板耦合波导放大器的标准具稳定的10 GHz梳状光源

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An optical comb source based on a slab-coupled optical waveguide amplifier (SCOWA) is presented. The laser is harmonically mode-locked at 10.287 GHz repetition rate and stabilized to an intra-cavity Fabry-Prot etalon via Pound- Drever-Hall locking. The Fabry-Prot etalon serves as a reference for the optical frequency of the comb-lines and suppresses the fiber cavity modes to allow only a single longitudinal mode-set to oscillate, generating a frequency comb spaced by the repetition rate. The pulse-to-pulse timing jitter and energy fluctuations are < 2 fs and < 0.03%, respectively (integrated from 1Hz to 100 MHz). Fundamental to this result is the incorporation of the SCOW amplifier as the gain medium and the use of an ultra-low noise sapphire-loaded cavity oscillator to mode-lock the laser. The SCOWA has higher saturation power than commercially available gain media, permitting higher intra-cavity power as well as available power at the output, increasing the power of the photodetected RF tones which increases their signal-to-noise ratio. A high visibility optical frequency comb is observed spanning ~3 nm (at -10 dB), with optical SNR > 60 dB for a cavity with no dispersion compensation. Initial results of a dispersion compensated cavity are presented. A spectral width of ~7.6 nm (-10 dB) was obtained for this case and the pulses can be compressed to near the transform limit at ~930 fs.
机译:提出了一种基于平板耦合光波导放大器(SCOWA)的光梳光源。激光器以10.287 GHz的重复频率谐波锁模,并通过Pound-Drever-Hall锁稳稳定到腔内Fabry-Prot标准具。 Fabry-Prot标准具用作梳状线光频率的参考,并抑制光纤腔模,以仅允许单个纵向模态振荡,从而产生以重复率间隔的频率梳。脉冲间的定时抖动和能量波动分别<2 fs和<0.03%(从1Hz到100 MHz积分)。此结果的基础是将SCOW放大器用作增益介质,并使用超低噪声蓝宝石负载腔振荡器来锁模激光器。 SCOWA具有比市售增益介质更高的饱和功率,允许更高的腔内功率以及输出端的可用功率,从而增加了光检测RF音调的功率,从而增加了其信噪比。在没有色散补偿的腔中,观察到的高可见度光学频率梳跨越〜3 nm(在-10 dB时),光学SNR> 60 dB。给出了色散补偿腔的初步结果。在这种情况下,获得了约7.6 nm(-10 dB)的光谱宽度,可以将脉冲压缩到约930 fs的变换极限附近。

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