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掺铒光纤激光系统中低于20阿秒定时抖动的特性表征。

Characterization of sub-20-attosecond timing jitter in erbium-doped fiber laser system.

作者信息

Rīgere Natālija, Brodschelm Andreas, Wilk Rafał, Iglev Hristo

出版信息

Opt Express. 2024 Apr 22;32(9):15215-15230. doi: 10.1364/OE.515880.

Abstract

The significance of timing jitter stems from its pivotal role in enhancing the precision of applications like spectroscopy and frequency metrology. In this study, we introduce a comprehensive procedure for achieving low timing jitter values in mode-locked fiber laser systems, highlighting dispersion, intracavity pulse energy, pulse length, and spectral bandwidth as key parameters. Notably, we unveil the influence of fiber amplifier pump power on jitter, a factor neglected in established theories and recent experiments. Applying this procedure to a 200-MHz all-polarization-maintaining (PM) erbium-doped (Er:) nonlinear amplifying loop mirror (NALM) fiber laser system, we demonstrate an exceptionally low timing jitter of 14.25 attoseconds, measured using the balanced optical cross-correlation (BOC) technique and integrated from 10 kHz to 4 MHz. The implementation of our novel method offers the opportunity to improve jitter results in various fiber laser systems and increase the accuracy of fiber laser applications.

摘要

定时抖动的重要性源于其在提高光谱学和频率计量学等应用的精度方面的关键作用。在本研究中,我们介绍了一种在锁模光纤激光系统中实现低定时抖动值的综合程序,强调色散、腔内脉冲能量、脉冲长度和光谱带宽是关键参数。值得注意的是,我们揭示了光纤放大器泵浦功率对抖动的影响,这是现有理论和近期实验中被忽视的一个因素。将此程序应用于一个200兆赫兹的全保偏(PM)掺铒(Er:)非线性放大环形镜(NALM)光纤激光系统,我们展示了使用平衡光学互相关(BOC)技术测量的、从10千赫兹到4兆赫兹积分得到的14.25阿秒的极低定时抖动。我们新方法的实施为改善各种光纤激光系统中的抖动结果以及提高光纤激光应用的精度提供了机会。

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