• Journal of Infrared and Millimeter Waves
  • Vol. 39, Issue 2, 149 (2020)
Jia-Cheng ZHU1、2, Jian-Kang ZHOU1、2、*, and Wei-Min SHEN1、2
Author Affiliations
  • 1School of Optoelectronic Science and Engineering, Soochow University, Suzhou25006, China
  • 2KeyLab. of Modern Optical Technologies of Education Ministry of China & Key Lab. of Advanced Optical Manufacturing Technologies of Jiangsu Province, Soochow University, Suzhou15006, China
  • show less
    DOI: 10.11972/j.issn.1001-9014.2020.02.003 Cite this Article
    Jia-Cheng ZHU, Jian-Kang ZHOU, Wei-Min SHEN. Design of polarization-independent two-dimensional binary blazed grating[J]. Journal of Infrared and Millimeter Waves, 2020, 39(2): 149 Copy Citation Text show less
    References

    [1] Z Sekera. Light scattering in the atmosphere and the polarization of sky light. J. Opt. Soc. Am, 47, 484-490(1957).

    [2] V C Vanderbilt, L Grant. Plant canopy specular reflectance model. IEEE Trans. Geosci. Remote Sensing, 23, 722-730(1985).

    [3] F M Breon, D Tanre, P Lecomte. Polarized reflectance of bare soils and vegetation measurements and models. IEEE Trans. Geosci. Remote Sensing, 33, 487-499(1995).

    [4] F Nadal, F M Breon. Parameterization of surface polarized reflectance derived from POLDER spaceborne measurements. IEEE Trans. Geosci. Remote Sensing, 37, 1709-1718(1999).

    [5] P Mouroulis, D W Wilson, P D Maker. Convex grating types for concentric imaging spectrometers. Appl. Opt, 37, 7200-8(1998).

    [6] K C Vishnubhatla, S V Rao, R S S Kumar. Femtosecond laser direct writing of gratings and waveguides in high quantum efficiency erbium-doped Baccarat glass. : Appl. Phys, 42, 205106(2009).

    [7] T Glaser, S Schroter, R Pohlmann. High-efficiency binary phase-transmission-grating using e-beam lithography. . Mod. Opt, 45, 1487-1494(1998).

    [8] U D Zeitner, M Oliva, F Fuchs. High performance diffraction gratings made by e-beam lithography. Appl. Phy. A, 109, 789-796(2012).

    [9] W Stork, N Streibl, H Haidner. Artificial distributed-index media fabricated by zero-order gratings. Opt. Lett, 16, 1921-1923(1991).

    [10] S V Babin, J T Sheridan. Artificial index surface relief diffraction optical elements. Proc. SPIE, 1751, 202-213(1993).

    [11] H Haidner, J T Sheridan, N Streibl. Design of a blazed grating consisting of metallic subwavelength binary grooves. Opt. Commun, 19, 5-10(1993).

    [12] N Lu, D Kuang, G Mu. Design of transmission blazed binary gratings for optical limiting with the form-birefringence theory. Appl. Opt, 47, 3743-3750(2008).

    [13] D Wu, X Sui, J Yang. Binary blazed grating-based polarization-independent filter on silicon. Front. Opto, 5, 78-81(2012).

    [14] M E Motamedi, W H Southwell, W J Gunning. Antireflection surfaces in silicon using binary optics technology. Appl. Opt, 31, 4371-4376(1992).

    [15] P Lalanne, S Astilean, P Chavel. Blazed binary subwavelength gratings with efficiencies larger than those of conventional echelette gratings. Opt. Lett, 23, 1081-1083(1998).

    [16] U D Zeitner, D Michaelis, E B Kley. High performance gratings for space applications. Proc. SPIE, 2010 7716, 77161K.

    [17] U D Zeitner, F Fuchs, E B Kley. Proc. SPIE, 8450, 84502Z(2012).

    [18] J. H. J. de Bruijne. Science performance of Gaia, ESA's space-astrometry mission. Astrophys. Space Sci, 341, 31-41(2012).

    [19] C C Tuck. Effective medium theory: principles and applications(2016).

    [20] 20MariaA V, DomenicoD C, “Effective medium theories,” in Fundamentals and Applications of Nanophotonics[M]. Cambridge: Woodhead Publishing, 2016.

    Jia-Cheng ZHU, Jian-Kang ZHOU, Wei-Min SHEN. Design of polarization-independent two-dimensional binary blazed grating[J]. Journal of Infrared and Millimeter Waves, 2020, 39(2): 149
    Download Citation