Frequency-mode-stable regenerative amplification at terahertz burst rates

IF 5.4 1区 物理与天体物理 Q1 OPTICS APL Photonics Pub Date : 2024-03-26 DOI:10.1063/5.0167721
V. Stummer, T. Flöry, M. Schneller, E. Kaksis, M. Zeiler, A. Pugžlys, A. Baltuška
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Abstract

Generation of high-fidelity amplified pulse bursts with a regular interpulse interval yields, in the spectral domain, an equidistant pattern of narrowband spectral modes, similar to frequency combs produced by cw mode-locked lasers but with greatly increased pulse energy. Despite their great potential for nonlinear spectroscopy, material processing, etc., such long frequency-stable bursts are difficult to generate and amplify because of prominent temporal intensity modulation even after strong dispersive pulse stretching. This study presents a burst generation method based on a master-oscillator regenerative-amplifier system that allows for chirped-pulse amplification (CPA) with high scalability in pulse number. A gradual smoothing of temporal intensity profiles at an increasing number of pulses is discovered, demonstrating an unexpected recovery of the CPA performance at terahertz intraburst repetition rates. In consequence, a self-referenced stable burst spectral peak structure with megahertz peak width is generated without risk of amplifier damage caused by interference of chirped pulses. This result eliminates limitations in burst amplification and paves the way for advancements in ultrashort-pulse burst technology, particularly for its use in nonlinear optical applications.
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太赫兹猝发率下的频模稳定再生放大
在光谱域中,产生具有规则脉冲间隔的高保真放大脉冲串会产生等距的窄带光谱模式,类似于 cw 模式锁定激光器产生的频率梳,但脉冲能量大大增加。尽管这种长频率稳定猝发在非线性光谱学、材料加工等方面具有巨大潜力,但由于即使在强色散脉冲拉伸后也会产生明显的时间强度调制,因此很难产生和放大这种猝发。本研究提出了一种基于主振荡器再生放大器系统的脉冲串生成方法,该方法可实现啁啾脉冲放大(CPA),且脉冲数具有很高的可扩展性。随着脉冲数的增加,时间强度曲线逐渐变得平滑,这表明在太赫兹内脉冲重复率下,CPA 性能得到了意想不到的恢复。因此,可以产生具有百万赫兹峰宽的自参照稳定脉冲串频谱峰结构,而不会出现啁啾脉冲干扰导致放大器损坏的风险。这一成果消除了猝发放大的局限性,为超短脉冲猝发技术的发展,特别是在非线性光学应用中的应用铺平了道路。
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来源期刊
APL Photonics
APL Photonics Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
10.30
自引率
3.60%
发文量
107
审稿时长
19 weeks
期刊介绍: APL Photonics is the new dedicated home for open access multidisciplinary research from and for the photonics community. The journal publishes fundamental and applied results that significantly advance the knowledge in photonics across physics, chemistry, biology and materials science.
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