实用GHz单腔全光纤双梳高速光谱学激光器

IF 23.4 Q1 OPTICS
Lin Ling, Wei Lin, Zhaoheng Liang, Minjie Pan, Chiyi Wei, Xuewen Chen, Yang Yang, Zhijin Xiong, Yuankai Guo, Xiaoming Wei, Zhongmin Yang
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引用次数: 0

摘要

具有几ghz齿间距的双梳光谱(DCS)在光谱分辨率和刷新率之间提供了更好的权衡,是测量和分析快速发展的瞬态事件的强大工具。尽管这是一个令人兴奋的机会,但现有技术在频谱分辨率或刷新率方面有所妥协,使得具有强大设计的低ghz DCS在很大程度上无法满足前沿应用。在这项工作中,我们通过探索全光纤超短腔配置中多模干涉介导的频谱滤波效果,展示了一种新型GHz DCS。单腔全光纤双梳源采用双波长锁模光纤激光器,工作频率约为1.0 GHz,差为148 kHz,在自由运行状态下具有良好的稳定性,平均时间为1 s, Allan偏差仅为101.7 mHz。由于异步二色脉冲序列之间的重复频率差异很大,GHz DCS使刷新时间短至6.75 μs,使其有望实时研究不可重复的瞬态现象。为此,通过成功捕获气球和鞭炮在室外爆炸的“冲击波”,验证了现有GHz DCS的实用性。这种GHz单腔全光纤双梳系统在不牺牲测量精度的情况下,有望显著提高采集速度和可靠性,有望成为高速应用的实用工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Practical GHz single-cavity all-fiber dual-comb laser for high-speed spectroscopy

Practical GHz single-cavity all-fiber dual-comb laser for high-speed spectroscopy

Dual-comb spectroscopy (DCS) with few-GHz tooth spacing that provides a better trade-off between spectral resolution and refresh rate is a powerful tool for measuring and analyzing rapidly evolving transient events. Despite such an exciting opportunity, existing technologies compromise either the spectral resolution or refresh rate, leaving few-GHz DCS with robust design largely unmet for frontier applications. In this work, we demonstrate a novel GHz DCS by exploring the multimode interference-mediated spectral filtering effect in an all-fiber ultrashort cavity configuration. The GHz single-cavity all-fiber dual-comb source is seeded by a dual-wavelength mode-locked fiber laser operating at fundamental repetition rates of about 1.0 GHz differing by 148 kHz, which has an excellent stability in the free-running state that the Allan deviation is only 101.7 mHz for an average time of 1 s. Thanks to the large repetition rate difference between the asynchronous dichromatic pulse trains, the GHz DCS enables a refresh time as short as 6.75 μs, making it promising for studying nonrepeatable transient phenomena in real time. To this end, the practicality of the present GHz DCS is validated by successfully capturing the ‘shock waves’ of balloon and firecracker explosions outdoors. This GHz single-cavity all-fiber dual-comb system promises a noteworthy improvement in acquisition speed and reliability without sacrificing measurement accuracy, anticipated as a practical tool for high-speed applications.

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来源期刊
Light-Science & Applications
Light-Science & Applications 数理科学, 物理学I, 光学, 凝聚态物性 II :电子结构、电学、磁学和光学性质, 无机非金属材料, 无机非金属类光电信息与功能材料, 工程与材料, 信息科学, 光学和光电子学, 光学和光电子材料, 非线性光学与量子光学
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审稿时长
2.1 months
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