• Acta Optica Sinica
  • Vol. 36, Issue 1, 112004 (2016)
Zhuge Jingchang1、*, Xing Shujian1, and Gao Jianshu2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.3788/aos201636.0112004 Cite this Article Set citation alerts
    Zhuge Jingchang, Xing Shujian, Gao Jianshu. Theoretical Analysis of Arbitrary and Absolute Length Measurement by Using Femtosecond Optical Frequency Comb[J]. Acta Optica Sinica, 2016, 36(1): 112004 Copy Citation Text show less
    References

    [1] Harry GM, LIGO Scientific Collaboration. Advanced LIGO: the next generation of gravitational wave detectors[J]. Classical and Quantum Gravity, 2010, 27 (8): 084006.

    [2] Lü Jianting, Cao Xibin, Gao Dai. Relative attitude control of satellite formation flying[J]. Journal of Harbin Institute of Technology, 2010, (1): 9-12.

    [3] Chai Lu, Hu Minglie, Fang Xiaohui, et al.. Advances in femtosecond laser technologies with photonic crystal fibers[J]. Chinese J Lasers, 2013,40(1): 0101001.

    [4] Huang Minshuang, Long Tengyu, Liu Huihui, et al.. A high-precision pulsed laser ranging time interval measurement technology based on sine curves method[J]. Chinese J Lasers, 2014, 41(8): 0808002.

    [5] Wang Guochao, Wei Chunhua, Yan Shuhua. Wavelength selection and non-ambiguity range analysis for optical comb referenced multiwavelength absolutely distance measurement[J]. Acta Optica Sinica, 2014, 34(4): 0412002.

    [6] Illingworth R, IS Ruddock. Cavity length measurement for synchronously pumped, mode-locked lasers[J]. Opt Commun, 1986, 59(5): 375-378.

    [7] Chekhovsky A M, A N Golubev, MV Gorbunkov. Optical pulse distance-multiplying interferometry[J]. Appl Opt, 1998, 37(16): 3480- 3483.

    [8] Oughstun K E, N A Cartwright. Physical significance of the group velocity in dispersive, ultrashortgaussian pulse dynamics[J]. Journal of Modern Optics, 2005, 52(8): 1089-1104.

    [9] Joo KN, SW Kim. Absolute distance measurement by dispersive interferometry using a femtosecond pulse laser[J]. Opt Express, 2006, 14(13): 5954-5960.

    [10] Lee J, Kim Y J, Lee K, et al.. Time-of-flight measurement with femtosecond light pulses[J]. Nature Photonics, 2010, 4(10): 716-720.

    [11] Balling P, Kr en P, Ma ika P, et al.. Femtosecond frequency comb based distance measurement in air[J]. Opt Express, 2009, 17(11): 9300- 9313.

    [12] Cui M, Zeitouny M G, Bhattacharya N, et al.. High-accuracy long-distance measurements in air with a frequency comb laser[J]. Opt Lett, 2009, 34(13): 1982-1984.

    [13] Choi S, Kashiwagi K, Kojima S, et al.. Two-wavelength multi-gigahertz frequency comb-based interferometry for full-field profilometry [J]. Appl Phys Express, 2013, 6(10): 106601.

    [14] Matsumoto H, Wang X, Takamasu K, et al.. Absolute measurement of baselines up to 403 m using heterodyne temporal coherence interferometer with optical frequency comb[J]. Appl Phys Express, 2012, 5(4): 046601.

    [15] Xing Shujian, Zhang Fumin, Cao Shiying, et al.. Arbitrary and absolute length measurement based onfemtosecond optical frequency comb [J]. Acta Physica Sinica, 2013, 62(17): 170603.

    [16] u L, H nsch T W, Spielmann C, et al.. Route to phase control of ultrashort light pulses[J]. Opt Lett, 1996, 21(24): 2008-2010.

    [17] Minoshima K, H Matsumoto. High-accuracy measurement of 240 m distance in an optical tunnel by use of a compact femtosecond laser [J]. Appl Opt, 2000, 39(30): 5512-5517.

    [18] Ye J. Absolute measurement of a long, arbitrary distance to less than an optical fringe[J]. Opt Lett, 2004, 29(10): 1153-1155.

    [19] Cui M, Schouten R N, Bhattacharya N, et al.. Experimental demonstration of distance measurement with a femtosecond frequency comb laser[J]. Journal of the European Optical Society-Rapid Publications, 2008, 3: 08003.

    [20] Wei D, Takahashi S, Takamasu K, et al.. Theoretical analysis of length measurement using interference of multiple pulse trains of a femtosecond optical frequency comb[J]. Japanese Journal of Applied Physics, 2011, 50(2R): 022701.

    [21] Balling P, Kr en P, Ma ika P, et al.. Femtosecond frequency comb based distance measurement in air[J]. Opt Express, 2009, 17 (11): 9300- 9313.

    [22] D Wei, H Matsumoto.Measurement accuracy of the pulse repition interval-based excess fraction(PRIEF) method: an analogy-based theoretical analysis[J]. Journal of the European Optical Society-Rapidpublications, 2012, 7: 12050.

    [23] Wu Hanzhong, Cao Shiying, Zhang Fumin, et al.. A new method of measuring absolute distance by using optical frequency comb[J]. Acta Physica Sinica, 2014, 63(10): 100601.

    [24] Birch K P, Downs M J. An updated Edlén equation for the refractive index of air[J]. Metrologia, 1993, 30(3): 155.

    [25] Ciddor P E. Refractive index of air: new equations for the visible and near infrared[J]. Appl Opt, 1996, 35(9): 1566-1573.

    [26] Birch K P, Downs M J. Correction to the updated Edlén equation for the refractive index of air[J]. Metrologia, 1994, 31(4): 315.

    [27] Chi Feng, Zhu Yu, Zhang Zhiping, et al.. Environment compensation technologies in dual-frequency laser interferometer measurement system[J]. Chinese J Lasers, 2014, 41(4): 0408004.

    CLP Journals

    [1] He Mingfang, Chen Kaixin, Hu Zhefeng. Kerr Optical Frequency Comb Based on Micro-Ring Resonator with Thermal Effect[J]. Laser & Optoelectronics Progress, 2018, 55(9): 91901

    Zhuge Jingchang, Xing Shujian, Gao Jianshu. Theoretical Analysis of Arbitrary and Absolute Length Measurement by Using Femtosecond Optical Frequency Comb[J]. Acta Optica Sinica, 2016, 36(1): 112004
    Download Citation