Abstract

This paper describes generalized grating imaging with equations based on geometrical optics and wave optics. It shows that the equation derived by wave optics agrees well with the description by geometrical optics. The derived equation based on wave optics can be used to deduce and calculate the intensity distribution of the grating image.

© 2008 Optical Society of America

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    [CrossRef]
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    [CrossRef]
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    [CrossRef]
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    [CrossRef]
  8. F. Pfeiffer, T. Weitkamp, O. Bunki, and C. David, “Phase retrieval and differential phase-contrast imaging with low-brilliance X-ray sources,” Nat. Phys. 2, 258-261 (2006).
  9. K. Patorski, “Incoherent superposition of multiple self-imaging Lau effect, and moiré fringe explanation,” Opt. Acta 30, 745-758 (1983).
  10. M. Born and E. Wolf, Principles of Optics, 7th ed. (Cambridge U. Press, 1999), p. 575.
  11. M. Born and E. Wolf, Principles of Optics, 7th ed. (Cambridge U. Press, 1999), p. 325.

2008 (1)

2006 (1)

F. Pfeiffer, T. Weitkamp, O. Bunki, and C. David, “Phase retrieval and differential phase-contrast imaging with low-brilliance X-ray sources,” Nat. Phys. 2, 258-261 (2006).

2004 (1)

2002 (1)

2000 (1)

1985 (1)

1983 (1)

K. Patorski, “Incoherent superposition of multiple self-imaging Lau effect, and moiré fringe explanation,” Opt. Acta 30, 745-758 (1983).

1981 (1)

Alonso, J.

Bernabeu, E.

Bernabéu, E.

Born, M.

M. Born and E. Wolf, Principles of Optics, 7th ed. (Cambridge U. Press, 1999), p. 325.

M. Born and E. Wolf, Principles of Optics, 7th ed. (Cambridge U. Press, 1999), p. 575.

Bunki, O.

F. Pfeiffer, T. Weitkamp, O. Bunki, and C. David, “Phase retrieval and differential phase-contrast imaging with low-brilliance X-ray sources,” Nat. Phys. 2, 258-261 (2006).

Crespo, D.

David, C.

F. Pfeiffer, T. Weitkamp, O. Bunki, and C. David, “Phase retrieval and differential phase-contrast imaging with low-brilliance X-ray sources,” Nat. Phys. 2, 258-261 (2006).

Fukuda, H.

García-Rodríguez, L.

Iwata, K.

Kusunoki, F.

Leith, E. N.

Moriwaki, K.

Patorski, K.

K. Patorski, “Incoherent superposition of multiple self-imaging Lau effect, and moiré fringe explanation,” Opt. Acta 30, 745-758 (1983).

K. Patorski, “The self-imaging phenomenon and its applications,” in Progress in Optics, Vol. XXVII, E.Wolf, ed. (North Holland, 1989), pp. 3-108.

Pfeiffer, F.

F. Pfeiffer, T. Weitkamp, O. Bunki, and C. David, “Phase retrieval and differential phase-contrast imaging with low-brilliance X-ray sources,” Nat. Phys. 2, 258-261 (2006).

Sudol, R.

Swanson, G. J.

Thompson, B. J.

Tomii, T.

Weitkamp, T.

F. Pfeiffer, T. Weitkamp, O. Bunki, and C. David, “Phase retrieval and differential phase-contrast imaging with low-brilliance X-ray sources,” Nat. Phys. 2, 258-261 (2006).

Wolf, E.

M. Born and E. Wolf, Principles of Optics, 7th ed. (Cambridge U. Press, 1999), p. 575.

M. Born and E. Wolf, Principles of Optics, 7th ed. (Cambridge U. Press, 1999), p. 325.

Appl. Opt. (3)

J. Opt. Soc. Am. A (2)

Nat. Phys. (1)

F. Pfeiffer, T. Weitkamp, O. Bunki, and C. David, “Phase retrieval and differential phase-contrast imaging with low-brilliance X-ray sources,” Nat. Phys. 2, 258-261 (2006).

Opt. Acta (1)

K. Patorski, “Incoherent superposition of multiple self-imaging Lau effect, and moiré fringe explanation,” Opt. Acta 30, 745-758 (1983).

Opt. Express (1)

Other (3)

M. Born and E. Wolf, Principles of Optics, 7th ed. (Cambridge U. Press, 1999), p. 575.

M. Born and E. Wolf, Principles of Optics, 7th ed. (Cambridge U. Press, 1999), p. 325.

K. Patorski, “The self-imaging phenomenon and its applications,” in Progress in Optics, Vol. XXVII, E.Wolf, ed. (North Holland, 1989), pp. 3-108.

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