• Acta Optica Sinica
  • Vol. 23, Issue 4, 390 (2003)
[in Chinese]*, [in Chinese], and [in Chinese]
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    [in Chinese], [in Chinese], [in Chinese]. Photovoltaic Effect in Doped Photorefractive LiNbO3 Crystal[J]. Acta Optica Sinica, 2003, 23(4): 390 Copy Citation Text show less
    References

    [1] Fitzgerald R. Phase-sensitive X-ray imaging. Phys. Today, 2000, (7):23~26

    [2] Momose A. Demonstration of phase-contrast X-ray computed tomography using an X-ray interferometer. Nucl. Instr. and Meth. in Phys. Res. (A), 1995, 352(2):622~628

    [3] Davis T J, Gao D, Gureyev T E. Phase-contrast imaging of weakly absorbing materials using hard X-rays. Nature, 1995, 373(6515):595~598

    [4] Schmahl G, Rudolph D, Schneider G. Phase contrast X-ray microscopy studies. Optik, 1994, 97(4):181~182

    [5] Cloetens P, Barrett R, Baruchel J. Phase objects in synchrotron radiation hard X-ray imaging. J. Phys. (D): Appl. Phys., 1996, 29(1):133~146

    [6] Wilkins S W, Gureyev T E, Gao D. Phase-contrast imaging using polychromatic hard X-rays. Nature, 1996, 384(6607):335~338

    [7] Pogany A, Gao D, Wilkins S W. Contrast and resolution in imaging with microfocus X-ray source. Rev. Sci. Instrum., 1997, 68(7):2774~2782

    [8] Gureyev T E, Roberts A. Phase retrieval with the transport-of-intensity equation (1). J. Opt. Soc. Am. (A), 1995, 12(9):1932~1941

    [9] Gureyev T E, Nugent K A. Phase retrieval with the transport-of-intensity equation (2). J. Opt. Soc. Am. (A), 1996, 13(8):1670~1682

    [10] Gureyev T E, Wilkins S W. On X-ray phase imaging with a point source. J. Opt. Soc. Am. (A), 1998, 15(3):579~585

    [12] Cheng J, Han S. On X-ray in-line Gabor holography with a partially coherent source. Opt. Commun., 1999, 172(12):17~24

    [13] Cheng J, Han S. Phase imaging with partially coherent X rays. Opt. Lett., 1999, 24(4):175~177

    [14] Cheng J, Han S. Diffraction tomography reconstruction algorithms for quantitative imaging of phase objects. J. Opt. Soc. Am. (A), 2001, 18(7):1460~1464

    [15] Rusforth C K. In Image Reconstruction,Theory and Application. New York: Academic Press, 1987

    [16] Richardson W H. Bayesian-based iterative method of image restoration. J. Opt. Soc. (A), 1972, 62(1):55~60

    [17] Stark H, Oskoui P. High-resolution Image recovery from image plane arrays, using convex projections. J. Opt. Soc. Am. (A), 1989, 6(11):1715~1726

    [18] Patti A J, Altunbasak Y. Artifact reduction for set theoretic super resolution image reconstruction with edge adaptive constraints and higher-order interpolants. IEEE Trans. IP., 2001, 10(1):179~186

    [19] Elad M, Feuer A. Restoration of a single superresolution image from several blurred, noisy and undersampled Measured images. IEEE Trans. IP., 1997, 6(12):1646~1658

    [20] Hunt B R. Super-resolution of images: algorithms, principles, performance, international. J. Imaging Systems and Technology, 1995, (6):297~304

    [21] Greenspan H, Anderson C H, Akber S. Image enhancement by nonlinear extrapolation in frequency space. IEEE Trans. IP., 2001, 9(6):1035~1048

    [22] Born M, Wolf E. Principles of Optics. 7th ed. Cambridge, 1999, Chapter 10

    [23] Cowley J M. Diffraction Physics. 3rd ed. North Holland: Amsterdam, 1995, Appendix

    [24] Castleman K R. Digital Image Processing. Prentice-Hall, 1996, Chapter 16

    CLP Journals

    [1] Xue Yanling, Xiao Tiqiao, Du Guohao, Liu Lixiang, Hu Wen, Xu Hongjie. Microscopic Identification of Panax Quinquefolium and Panax Ginseng by X-Ray Phase Contrast Imaging[J]. Acta Optica Sinica, 2008, 28(9): 1828

    [in Chinese], [in Chinese], [in Chinese]. Photovoltaic Effect in Doped Photorefractive LiNbO3 Crystal[J]. Acta Optica Sinica, 2003, 23(4): 390
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