distance measurements with lasers (original) (raw)

Author: the photonics expert

Definition: measurements of distances using laser light

More specific terms: phase shift method for distance measurements, time-of-flight measurements, triangulation

Categories: article belongs to category optical metrology optical metrology, article belongs to category methods methods

DOI: 10.61835/ff8 [Cite the article](encyclopedia%5Fcite.html?article=distance measurements with lasers&doi=10.61835/ff8): BibTex plain textHTML Link to this page LinkedIn

Lasers can be used in various ways to measure distances or displacements without physical contact. In fact they allow for the most sensitive and precise length measurements, for extremely fast recordings (sometimes with a bandwidth of many megahertz), and for the largest measurement ranges, even though these qualities are usually not combined by a single technique. Depending on the specific demands, very different technical approaches can be appropriate. They find a wide range of applications, for example in architecture, inspection of fabrication halls, criminal scene investigation (CSI), and in the military.

Techniques for Distance Measurements

Some of the most important techniques used for laser distance meters are as follows:

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Bibliography

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[4] C.-M. Wu et al., “Heterodyne interferometer with subatomic periodic nonlinearity”, Appl. Opt. 38 (19), 4089 (1999); https://doi.org/10.1364/AO.38.004089
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[6] S. Poujouly and B. Journet, “Laser range-finding by phase-shift measurement: moving toward smart systems”, in K. G. Harding, J. W. V. Miller, and B. G. Batchlor, eds., Machine Vision and Three-Dimensional Imaging Systems for Inspection and Metrology, Proc. SPIE 4189, 152, SPIE (2001); https://doi.org/10.1117/12.417192
[7] T. R. Schibli et al., “Displacement metrology with sub-pm resolution in air based on a fs-comb wavelength synthesizer”, Opt. Express 14 (13), 5984 (2006); https://doi.org/10.1364/OE.14.005984
[8] K. Joo et al., “Distance measurements by combined method based on a femtosecond pulse laser”, Opt. Express 16 (24), 19799 (2008); https://doi.org/10.1364/OE.16.019799
[9] I. Coddington et al., “Rapid and precise absolute distance measurements at long range”, Nature Photon. 3, 351 (2009); https://doi.org/10.1038/nphoton.2009.94
[10] G. Berkovic and E. Shafir, “Optical methods for distance and displacement measurements”, Adv. in Opt. and Photon. 4 (4), 441 (2012); https://doi.org/10.1364/AOP.4.000441

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