2019
DOI: 10.1364/ao.58.000g19
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Digital holography efficiency measurements with excess noise

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Cited by 13 publications
(24 citation statements)
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“…Furthermore, η T contains all the system efficiencies (multiplicative losses) that degrade the fringe visibility, such as optical transmission losses through the atmosphere and receiver optics, the quantum efficiency of the FPA, the mixing efficiency of the signal and reference, etc. 8 The mixing efficiency is how well the detected reference and signal interfere and thus produce fringes. For example, a phenomenon such as rough-surface scattering from a dielectric object depolarizes the signal and decreases the mixing efficiency by 50%, thus decreasing the visibility of the fringes.…”
Section: Coherence Efficiency η Cmentioning
confidence: 99%
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“…Furthermore, η T contains all the system efficiencies (multiplicative losses) that degrade the fringe visibility, such as optical transmission losses through the atmosphere and receiver optics, the quantum efficiency of the FPA, the mixing efficiency of the signal and reference, etc. 8 The mixing efficiency is how well the detected reference and signal interfere and thus produce fringes. For example, a phenomenon such as rough-surface scattering from a dielectric object depolarizes the signal and decreases the mixing efficiency by 50%, thus decreasing the visibility of the fringes.…”
Section: Coherence Efficiency η Cmentioning
confidence: 99%
“…Also note that we assumed monochromaticity with the cosines in Eq. (8). We approximated the sinusoidal phase modulated spectrum, G s ðνÞ, as E Q -T A R G E T ; t e m p : i n t r a l i n k -; e 0 0 9 ; 1 1 6 ; 1 4 8…”
Section: Sinusoidal Modulationmentioning
confidence: 99%
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“…Our previous work experimentally measured the mixing efficiency of a DH system [10]. In this work, the mixing efficiency only depended on two efficiencies: the polarization efficiency and the spatial integration efficiency.…”
mentioning
confidence: 99%