We introduce a new interferometric imaging methodology that we term interferometry with coded mutual intensity, which allows selectively imaging photon paths based on attributes such as their length and endpoints. At the core of our methodology is a new technical result that shows that manipulating the spatial coherence properties of the light source used in an interferometric system is equivalent, through a Fourier transform, to implementing light path probing patterns. These patterns can be applied to either the coherent transmission matrix, or the incoherent light transport matrix describing the propagation of light in a scene. We test our theory by building a prototype inspired by the Michelson interferometer, extended to allow for prog...
Context. A long-held vision has been to realize diffraction-limited optical aperture synthesis over ...
Optical Coherence Tomography is an imaging technique for capturing three-dimensional images of weakl...
An experimental technique is developed to simultaneously measure both temporal and spatial coherence...
In this thesis we present novel methods to improve the limitations in Optical Coherence Tomography (...
The project aims at studying the functioning of an optical coherence scheme that make use of a nonli...
Copyright 2015 ACM. We present a computational imaging system, inspired by the optical coherence tom...
International audienceA general theoretical framework is described to obtain the advantages and the ...
International audienceHigh resolution stellar interferometers are very powerful efficient instrument...
The ability to image objects with high precision is central to our every-day life and to the progres...
We present a computational imaging system, inspired by the opti-cal coherence tomography (OCT) frame...
INTRODUCTION The Michelson stellar interferometer (MSI) (also known as long-baseline interferome...
We propose an instrument model for coherence scanning interferometry using familiar Fourier optics m...
We demonstrate experimentally spectral-domain intensity optical coherence tomography using a Mach-Ze...
This thesis describes the development, analysis, and verification of techniques for constructing Fou...
Abstract ― Any bolometer that is greater than a few wavelengths in size is receptive to the power in...
Context. A long-held vision has been to realize diffraction-limited optical aperture synthesis over ...
Optical Coherence Tomography is an imaging technique for capturing three-dimensional images of weakl...
An experimental technique is developed to simultaneously measure both temporal and spatial coherence...
In this thesis we present novel methods to improve the limitations in Optical Coherence Tomography (...
The project aims at studying the functioning of an optical coherence scheme that make use of a nonli...
Copyright 2015 ACM. We present a computational imaging system, inspired by the optical coherence tom...
International audienceA general theoretical framework is described to obtain the advantages and the ...
International audienceHigh resolution stellar interferometers are very powerful efficient instrument...
The ability to image objects with high precision is central to our every-day life and to the progres...
We present a computational imaging system, inspired by the opti-cal coherence tomography (OCT) frame...
INTRODUCTION The Michelson stellar interferometer (MSI) (also known as long-baseline interferome...
We propose an instrument model for coherence scanning interferometry using familiar Fourier optics m...
We demonstrate experimentally spectral-domain intensity optical coherence tomography using a Mach-Ze...
This thesis describes the development, analysis, and verification of techniques for constructing Fou...
Abstract ― Any bolometer that is greater than a few wavelengths in size is receptive to the power in...
Context. A long-held vision has been to realize diffraction-limited optical aperture synthesis over ...
Optical Coherence Tomography is an imaging technique for capturing three-dimensional images of weakl...
An experimental technique is developed to simultaneously measure both temporal and spatial coherence...