DocumentCode :
1062350
Title :
Quantum-Noise Limited Distance Resolution of Optical Range Imaging Techniques
Author :
Seitz, Peter
Author_Institution :
Swiss Center for Electron. & Mi- crotechnology, Univ. of Neuchatel, Neuchatel
Volume :
55
Issue :
8
fYear :
2008
Firstpage :
2368
Lastpage :
2377
Abstract :
The most common optical distance imaging methods (triangulation, interferometry and time-of-flight ranging) can all be described in a unified way as linear shift-invariant systems in which the determination of distance corresponds to the measurement of a spatial or temporal phase. Since the ultimate precision of such a phase measurement is limited by quantum noise of the involved photons or photocharges, the eventual distance resolution of the three optical ranging methods depends in the same way on quantum noise. Evidence from literature supports our basic assertion that photon and photocharge numbers have a Poisson distribution under most experimental conditions. This allows us to derive our main result that the quantum-noise limited distance resolution of the three optical ranging methods is proportional to the inverse of the signal´s modulation amplitude times the square root of the background level. The equation for the precision of the three optical distance measurement techniques contains the method´s experimental parameters in a single factor, from which the optimum distance range of the three techniques can easily be deduced: 1 nm-1 mum for interferometry, 1 mum-10 m for triangulation, > 0.1 m for time-of-flight ranging, if visible or near infrared light is used.
Keywords :
Poisson distribution; distance measurement; light interferometry; quantum noise; Poisson distribution; distance resolution; interferometry; optical distance imaging methods; optical ranging methods; quantum noise; triangulation; Interferometry; Optical range imaging; interferometry; optical range imaging; quantum-noise limit; time-of-flight ranging; triangulation;
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2008.918231
Filename :
4447692
Link To Document :
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