Aims. We compare the performance of multi and singlemode interferometry for estimating the phase of the complex visibility. Methods. We provide a theoretical description of the interferometric signal that enables us to derive the phase error with detector, photon, and atmospheric noises, for both multi and singlemode cases. Results. We show that despite the loss of flux which occurs when the light is injected in the singlemode component (i.e. singlemode fibers, integrated optics), the spatial filtering properties of these singlemode devices often enable a better performance than multimode concepts. In the high-flux regime, which is speckle-noise dominated,...
Phase "extraction" by using temporal phase shifting is sensitive to vibrations and drifts, producing...
The fringe tracker system of the ASSI (Active Stabilization in Stellar Interferometry) beam combinin...
Optical Interferometry has long been limited by low SNR making it nearly impossible to measure the s...
International audienceAims. We compare the performance of multi and singlemode interferometry for es...
Received xxx; accepted xxx Aims. In this paper we compare the performance of multi and single-mode i...
We compare performances of ground-based single-mode and multimode (speckle) interferometers in the ...
International audienceInterferometric observations with three telescopes or more provide two observa...
International audienceThere are several solutions to code the signal arising from optical long-basel...
International audienceWe have recently shown that a posteriori co-phasing of multi-spectral interfer...
Spatial phase-referencing in dual-field optical interferometry is reconsidered. Our analysis is base...
This article describes and analyses multistep algorithms for evaluating of the wave field phase in i...
Spatial phase-referencing in dual-field optical interferometry is reconsidered. Our analysis is base...
To enable optical long baseline interferometry toward faint objects, long integrations are necessary...
The limitations of current stellar interferometers is their low sensitivity, and the next generation...
Optical interferometric techniques offer non-contact, high accuracy and full field measurement, whic...
Phase "extraction" by using temporal phase shifting is sensitive to vibrations and drifts, producing...
The fringe tracker system of the ASSI (Active Stabilization in Stellar Interferometry) beam combinin...
Optical Interferometry has long been limited by low SNR making it nearly impossible to measure the s...
International audienceAims. We compare the performance of multi and singlemode interferometry for es...
Received xxx; accepted xxx Aims. In this paper we compare the performance of multi and single-mode i...
We compare performances of ground-based single-mode and multimode (speckle) interferometers in the ...
International audienceInterferometric observations with three telescopes or more provide two observa...
International audienceThere are several solutions to code the signal arising from optical long-basel...
International audienceWe have recently shown that a posteriori co-phasing of multi-spectral interfer...
Spatial phase-referencing in dual-field optical interferometry is reconsidered. Our analysis is base...
This article describes and analyses multistep algorithms for evaluating of the wave field phase in i...
Spatial phase-referencing in dual-field optical interferometry is reconsidered. Our analysis is base...
To enable optical long baseline interferometry toward faint objects, long integrations are necessary...
The limitations of current stellar interferometers is their low sensitivity, and the next generation...
Optical interferometric techniques offer non-contact, high accuracy and full field measurement, whic...
Phase "extraction" by using temporal phase shifting is sensitive to vibrations and drifts, producing...
The fringe tracker system of the ASSI (Active Stabilization in Stellar Interferometry) beam combinin...
Optical Interferometry has long been limited by low SNR making it nearly impossible to measure the s...