Acta Optica Sinica, Volume. 32, Issue 8, 812004(2012)

Dispersion of Nitrogen Gas at Wavelengths from 0.145~2.058 μm in Standard Condition

Zhang Jitao*, Huang Pei, Li Yan, and Wei Haoyun
Author Affiliations
  • [in Chinese]
  • show less
    References(21)

    [4] [4] Luo Le, Wang Yi, Chu Yaqiong et al.. Influence of the nitrogen pressure on diamond-like carbon film deposited by pulsed laser and its infrared property[J]. Chinese J. Lasers, 2011, 38(9): 0907001

    [5] [5] E. W. Cheney. Measurement of index of refraction of gases at higher temperatures[J]. Phys. Rev., 1927, 29(2): 292~298

    [6] [6] C. E. Bennett. Dispersion and refractive index of nitrogen measured as functions of pressure by displacement interferometry[J]. Phys. Rev., 1931, 37(3): 263~275

    [7] [7] C. E. Bennett. Precise measurement of dispersion in nitrogen[J]. Phys. Rev., 1934, 45(3): 200~207

    [8] [8] C. E. Bennett. Optical dispersion and molar refraction at zero frequency for compressed nitrogen, argon, and carbon dioxide measured as functions of density[J]. Phys. Rev., 1940, 58(3): 263~266

    [9] [9] P. G. Wilkinson. Refractive dispersion of nitrogen in the vacuum ultraviolet[J]. J. Opt. Soc. Am., 1960, 50(10): 1002~1005

    [10] [10] E. R. Peck, B. N. Khanna. Dispersion of nitrogen[J]. J. Opt. Soc. Am., 1966, 56(8): 1059~1063

    [11] [11] C. C. Bradley, H. A. Gebbie. Refractive index of nitrogen, water vapor, and their mixtures at submillimeter wavelengths[J]. Appl. Opt., 1971, 10(4): 755~758

    [12] [12] U. Griesmann, J. H. Burnett. Refractivity of nitrogen gas in the vacuum ultraviolet[J]. Opt. Lett., 1999, 24(23):1699~1701

    [13] [13] J. Zhang, Z. H. Lu, L. J. Wang. Precision refractive index measurement of air, N2, O2, Ar, and CO2 with frequency comb[J]. Appl. Opt., 2008, 47(17): 3143~3151

    [14] [14] M. J. Weber. Handbook of Optical Materials[M]. London: CRC Press, 2003. 454

    [15] [15] J. Koch. ber die dispersion des lichtes in gasfrmigen Krpern innerhalb des ultravioletten spektrums[J]. Arkiv Math. Astron. Fysik, 1913, 9(6): 1~11

    [16] [16] J. Jágerská, H. Zhang, Z. Diao et al.. Refractive index sensing with an air-slot photonic crystal nanocavity[J]. Opt. Lett., 2010, 35(15): 2523~2525

    [17] [17] B. Wang, M. A. Dündar, R. Ntzel et al.. Photonic crystal slot nanobeam slow light waveguides for refractive index sensing[J]. Appl. Phys. Lett., 2010, 97(15): 151105

    [18] [18] Y. Zhao, Y. Zhang, Q. Wang. Research advances of photonic crystal gas and liquid sensors[J]. Sensors and Actuators B, 2011, 160(1): 1288~1297

    [19] [19] M. Born, E. Wolf. Principles of Optics (7th Edition) [M]. Cambridge: Press of University of Cambridge,1999. 92

    [20] [20] B. Edlén. The refractive index of air[J]. Metrologia, 1966, 2(2): 71~80

    [21] [21] G. Bnsch, E. Potulski. Measurement of the refractive index of air and comparison with modified Edlén′s formulae[J]. Metrologia, 1998, 35(2): 133~139

    Tools

    Get Citation

    Copy Citation Text

    Zhang Jitao, Huang Pei, Li Yan, Wei Haoyun. Dispersion of Nitrogen Gas at Wavelengths from 0.145~2.058 μm in Standard Condition[J]. Acta Optica Sinica, 2012, 32(8): 812004

    Download Citation

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

    Category: Instrumentation, Measurement and Metrology

    Received: Feb. 21, 2012

    Accepted: --

    Published Online: Jun. 25, 2012

    The Author Email: Jitao Zhang (zjt@mail.tsinghua.edu.cn)

    DOI:10.3788/aos201232.0812004

    Topics