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  1. S. C. Ems, T. R. Marshall, F. T. Gucker, “Simple Methods for High-Resolution Scanning of Laser Beams and Alignment of Small Spatial Filtered Beams,” Rev. Sci. Instrum. 44, 475 (1973).
    [CrossRef]
  2. M. V. R. K. Murty, “Use of a Single Plane Parallel Plate as a Lateral Shearing Interferometer with a Visible Gas Laser Source,” Appl. Opt. 3, 531 (1964).
    [CrossRef]
  3. M. Lurie, “Evaluation of Expanded Laser Beams Using an Optical Flat,” Opt. Eng. 15, 68 (1976).
    [CrossRef]
  4. M. E. Riley, M. A. Gusinow, “Laser Beam Divergence Utilizing a Lateral Shearing Interferometer,” Appl. Opt. 16, 2753 (1977).
    [CrossRef] [PubMed]
  5. F. M. Dickey, T. M. Harder, “Shearing Plate Optical Alignment,” Opt. Eng. 17, 295 (1978).
    [CrossRef]
  6. J. C. Fouéré, D. Malacara-Hernandez, “Focusing Errors in a Collimating Lens or Mirror: Use of a Moire Technique,” Appl. Opt. 13, 1322 (1974).
    [CrossRef] [PubMed]
  7. K. Patorski, S. Yokozeki, T. Suzuki, “Collimation Test by Double Grating Shearing Interferometer,” Appl. Opt. 15, 1234 (1976).
    [CrossRef] [PubMed]
  8. E. B. Turner, The Aerospace Corp.; private communication (1983).
  9. N. E. Rityn, “Optics of Corner Cube Reflectors,” Sov. J. Opt. Technol. 34, 198 (1967).
  10. B. E. Truax, “Microwave Tower Deflection Monitor,” Proc. Soc. Photo-Opt. Instrum. Eng. 247, 166 (1980).

1980 (1)

B. E. Truax, “Microwave Tower Deflection Monitor,” Proc. Soc. Photo-Opt. Instrum. Eng. 247, 166 (1980).

1978 (1)

F. M. Dickey, T. M. Harder, “Shearing Plate Optical Alignment,” Opt. Eng. 17, 295 (1978).
[CrossRef]

1977 (1)

1976 (2)

1974 (1)

1973 (1)

S. C. Ems, T. R. Marshall, F. T. Gucker, “Simple Methods for High-Resolution Scanning of Laser Beams and Alignment of Small Spatial Filtered Beams,” Rev. Sci. Instrum. 44, 475 (1973).
[CrossRef]

1967 (1)

N. E. Rityn, “Optics of Corner Cube Reflectors,” Sov. J. Opt. Technol. 34, 198 (1967).

1964 (1)

Dickey, F. M.

F. M. Dickey, T. M. Harder, “Shearing Plate Optical Alignment,” Opt. Eng. 17, 295 (1978).
[CrossRef]

Ems, S. C.

S. C. Ems, T. R. Marshall, F. T. Gucker, “Simple Methods for High-Resolution Scanning of Laser Beams and Alignment of Small Spatial Filtered Beams,” Rev. Sci. Instrum. 44, 475 (1973).
[CrossRef]

Fouéré, J. C.

Gucker, F. T.

S. C. Ems, T. R. Marshall, F. T. Gucker, “Simple Methods for High-Resolution Scanning of Laser Beams and Alignment of Small Spatial Filtered Beams,” Rev. Sci. Instrum. 44, 475 (1973).
[CrossRef]

Gusinow, M. A.

Harder, T. M.

F. M. Dickey, T. M. Harder, “Shearing Plate Optical Alignment,” Opt. Eng. 17, 295 (1978).
[CrossRef]

Lurie, M.

M. Lurie, “Evaluation of Expanded Laser Beams Using an Optical Flat,” Opt. Eng. 15, 68 (1976).
[CrossRef]

Malacara-Hernandez, D.

Marshall, T. R.

S. C. Ems, T. R. Marshall, F. T. Gucker, “Simple Methods for High-Resolution Scanning of Laser Beams and Alignment of Small Spatial Filtered Beams,” Rev. Sci. Instrum. 44, 475 (1973).
[CrossRef]

Murty, M. V. R. K.

Patorski, K.

Riley, M. E.

Rityn, N. E.

N. E. Rityn, “Optics of Corner Cube Reflectors,” Sov. J. Opt. Technol. 34, 198 (1967).

Suzuki, T.

Truax, B. E.

B. E. Truax, “Microwave Tower Deflection Monitor,” Proc. Soc. Photo-Opt. Instrum. Eng. 247, 166 (1980).

Turner, E. B.

E. B. Turner, The Aerospace Corp.; private communication (1983).

Yokozeki, S.

Appl. Opt. (4)

Opt. Eng. (2)

F. M. Dickey, T. M. Harder, “Shearing Plate Optical Alignment,” Opt. Eng. 17, 295 (1978).
[CrossRef]

M. Lurie, “Evaluation of Expanded Laser Beams Using an Optical Flat,” Opt. Eng. 15, 68 (1976).
[CrossRef]

Proc. Soc. Photo-Opt. Instrum. Eng. (1)

B. E. Truax, “Microwave Tower Deflection Monitor,” Proc. Soc. Photo-Opt. Instrum. Eng. 247, 166 (1980).

Rev. Sci. Instrum. (1)

S. C. Ems, T. R. Marshall, F. T. Gucker, “Simple Methods for High-Resolution Scanning of Laser Beams and Alignment of Small Spatial Filtered Beams,” Rev. Sci. Instrum. 44, 475 (1973).
[CrossRef]

Sov. J. Opt. Technol. (1)

N. E. Rityn, “Optics of Corner Cube Reflectors,” Sov. J. Opt. Technol. 34, 198 (1967).

Other (1)

E. B. Turner, The Aerospace Corp.; private communication (1983).

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Figures (1)

Fig. 1
Fig. 1

Displacement of the return beam from a small corner cube intercepting a large diameter diverging beam.

Equations (2)

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A - B A = L R
R = L A A - B .

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