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September 18, 2025Applied Physics Letters5 citations

Variable wavelength-multiplexed dual-comb generation and spectroscopic measurement by a free-running all-normal-dispersion Yb-doped fiber laser

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XZXiangwen ZhangYYYan YuRZRui Zhao

Key Points

  • The use of a dual-comb laser significantly enhances broadband spectral coverage in metrology applications.
  • Experimental results showed very good agreement between dual-comb spectroscopy and an optical spectrum analyzer.
  • A birefringent filter enables the generation of dual-wavelength combs with varied repetition rates.
  • This approach supports the development of high-performance Yb-doped fiber lasers for spectroscopic applications.

Abstract

Single-cavity Er-doped mode-locked fiber lasers that can generate dual frequency combs with distinct repetition rates hold significant potential for low-complexity dual-comb metrology applications. Recent studies on dual-comb Yb-doped light sources with an all-normal dispersion mechanism have been proposed. In this work, we experimentally and numerically demonstrate a variable and switchable all-normal dispersion dual-wavelength Yb-doped fiber mode-locked laser based on a birefringent filter. In contrast to the previous dual-comb spectroscopy demonstrations directly enabled by the single-wavelength dual-comb all-normal dispersion Yb-doped laser, this work demonstrates broadband spectral coverage expansion in a dual-wavelength dual-comb laser source through an external Yb-doped fiber amplifier and photonic crystal fiber, with little additional intensity and phase noise. To evaluate mutual coherence and verify the feasibility by utilizing broadening combs, we performed proof-of-concept dual-comb spectroscopy of the transmission measurements with a homemade Sagnac filter; the results showed very good agreement with those obtained using an optical spectrum analyzer. It is of great significance to use a periodic filter in the cavity and eventually measure the transmission curve of such a periodic filter. Our work paves the way for the development of broadening all-normal-dispersion Yb-doped fiber lasers, which are well-suited for dual-comb applications.

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Cite This Study

Zhang et al. (2025) studied this question.

synapsesocial.com/papers/68d461cb31b076d99fa61301https://doi.org/10.1063/5.0287734
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