Chinese Journal of Lasers, Volume. 45, Issue 4, 400001(2018)

Research Advances in Dual-Comb Spectroscopy

Lu Qiao1,2, Shi Lei1, and Mao Qinghe1,2、*
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    References(114)

    [1] Udem T, Holzwarth R, Hänsch T W. Optical frequency metrology[J]. Nature, 416, 233-237(2002).

    [3] Chou C W, Hume D B, Rosenband T et al. Optical clocks and relativity[J]. Science, 329, 1630-1633(2010).

    [6] Krausz F, Ivanov M. Attosecond physics[J]. Reviews of Modern Physics, 81, 163-234(2009).

    [9] Cundiff S T, Weiner A M. Optical arbitrary waveform generation[J]. Nature Photonics, 4, 760-766(2010).

    [19] Coddington I, Newbury N, Swann W. Dual-comb spectroscopy[J]. Optica, 3, 414-426(2016).

    [20] Schiller S. Spectrometry with frequency combs[J]. Optics Letters, 27, 766-768(2002).

    [25] Ideguchi T. Dual-comb spectroscopy[J]. Optics and Photonics News, 28, 32-39(2017).

    [50] Griffiths P R. Haseth J A D. Fourier transform infrared spectrometry[M]. 2nd ed. New Jersey: John Wiely & Sons, 19-36(2006).

    [62] Burghoff D, Yang Y, Hu Q. Computational multiheterodyne spectroscopy[J]. Science Adances, 2, e1601227(2016).

    [63] Sterczewski L A, Westberg J, Patrick L et al. Computational adaptive sampling for multiheterodyne spectroscopy[C]. Conference on Lasers and Electro-Optics, JW2A, 80(2017).

    [64] Gong Z, Zhao X, Hu G Q et al. Polarization multiplexed, dual-frequency ultrashort pulse generation by a birefringent mode-locked fiber laser[C]. Conference on Lasers and Electro-Optics, JTh2A, 20(2014).

    [71] Foltynowicz A, Masłowski P, Ban T et al. Optical frequency comb spectroscopy[J]. Faraday Discussions, 150, 23-31(2011).

    [76] Carlson D R, Wu T H, Jones R J. Dual-comb intracavity high harmonic generation[C]. Frontiers in Optics, FTh1A, 2(2014).

    [79] Zhang Z W, Gu C L, Sun J H et al. Asynchronous midinfrared ultrafast optical parametric oscillator for dual-comb spectroscopy[J]. Optics Letters, 37, 187-189(2012).

    [97] Picque N. Fourier transform spectroscopy with laser frequency combs[C]. Fourier Transform Spectroscopy and Hyperspectral Imaging and Sounding of the Environment, FT2A, 1(2015).

    [99] Chen Z J, Yan M, Hänsch T Wet al. A phase-stable dual-comb interferometer[J/OL]. 1705. 04214 (2017-05-11). https://arxiv.org/ftp/arxiv/papers/1705/1705.04214.pdf.(2017).

    [106] Wilken T, Lezius M, Hänsch T W et al. A frequency comb and precision spectroscopy experiment in space[C]. Conference on Lasers and Electro-Optics, AF2H, 5(2013).

    [107] Tadanaga O, Okubo A, Inaba Het al. Wideband optical frequency comb light source for use in e.g. -12-15[P]. has nonlinear optical medium emitting light of first, second wavelength among lights in input of optical frequency comb: JP2016212261A.(2016).

    [108] Zheng Z, Zhao X, Liu L et al. -09-06[P]. system for measuring optical asynchronous sampled signal: WO2013127370.(2013).

    [110] Kippenberg T, Del'Haye P, Schliesser A. Method. -07-19[P]. apparatus for optical frequency comb generation using a monolithic micro-resonator: US7982944.(2011).

    [112] Fermann M E, Marangoni M, lasers has frequency shifter, generating line narrowed, CW laser output. -11-03[P]. which is driven by signal derived from beat signal in feedforward configuration: WO2013148757A1, US2015185141A1, US9097656B2.(2013).

    [113] Chandler D W, by frequency-comb signals. -01-05[P]. respectively: WO2012003046A2, WO2012003046A3, US2012002212A1, US8693004B2.(2012).

    [114] Fermann M E. -08-07[P]. Hartl I. Coherent dual scanning laser system for e.g. optical imaging of test sample, has optical reference comprising optical element that generates reference signal for measurement of time delay bet(2014).

    [115] Fermann M E. -09-09[P]. Hartl I. Coherent dual scanning laser system for optical imaging system used in e.g. microscopy, has optical element that generates frequency converted spectral output having frequency comb comprising(2010).

    [116] Newbury N R, Coddington I. -03-24[P]. Swann W C. Method for performing comb-based spectroscopy of hydrogen cyanide gas sample in workhorse system for e.g. research application, involves real time summing digitized sample to generate avera(2011).

    [117] Coddington I, Newbury N R. -12-26[P]. Swann W C. Comb-based spectroscopy method for measuring continuous wave source at time-bandwidth limited resolution, involves Fourier transforming product of digitized samples to yield wideband spectr(2013).

    Tools

    Get Citation

    Copy Citation Text

    Lu Qiao, Shi Lei, Mao Qinghe. Research Advances in Dual-Comb Spectroscopy[J]. Chinese Journal of Lasers, 2018, 45(4): 400001

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: reviews

    Received: Sep. 20, 2017

    Accepted: --

    Published Online: Apr. 13, 2018

    The Author Email: Qinghe Mao (mqinghe@aiofm.ac.cn)

    DOI:10.3788/CJL201845.0400001

    Topics