Spectroscopy and Spectral Analysis, Volume. 41, Issue 11, 3321(2021)
A Review of Single-Cavity Dual-Comb Laser and Its Application in Spectroscopy
Fig. 1. Schematic diagram of asynchronous optical sampling
(a): Time domain; (b): Frequency domain
Fig. 2. (a) Structure diagram of dual-wavelength laser controlled by filter and attenuator effect; (b) optical spectrum; (c) RF spectrum
Fig. 3. (a) Schematic of the polarization-multiplexed dual-comb fiber laser; (b) abnormal dispersion; (c) normal dispersion : optical spectra and RF spectra of polarization-resolved outputs
Fig. 4. (a) Experimental setup of bidirectional dual-comb fiber laser; (b) fluctuation of the repetition rates; (c) the difference in the repetition rate (
Fig. 5. (a) Schematics of pulse-shape-multiplexed dual-comb laser; (b) time domain interferogram; (c) spectrum of dual-comb laser
Fig. 6. Structures of (a) polarization maintaining laser based on SWNT; (b) polarization-maintaining dual-wavelength mode-locked laser based on Sagnac filter; (c) all-PM dual-comb fiber laser with SWNT; (d) bidirectional partly polarization-maintaining fiber laser
Fig. 7. (a) Principle of spectral measurement; (b) two different path measurement methods
Fig. 8. The spectral range of dual-comb measurement and the corresponding dual-comb source technologies
Fig. 9. (a) Configuration of comb-mode-resolved adaptive sampling THz-DCS; (b) comparison of the temporalwaveforms averaged 100 000 times obtained with different sampling clocks. Inset: a zoomed-in plot of the main THz pulse; (c) comb-mode-resolved THz spectrum through air at room pressure. Inset: a zoomed-in plot around 0.567 2 THz
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Zhi-gao ZHU, Ya LIU, Jie YANG, Guo-qing HU. A Review of Single-Cavity Dual-Comb Laser and Its Application in Spectroscopy[J]. Spectroscopy and Spectral Analysis, 2021, 41(11): 3321
Category: Orginal Article
Received: Oct. 21, 2020
Accepted: --
Published Online: Dec. 17, 2021
The Author Email: Zhi-gao ZHU (zhuzg37@sina.com)