Advances in optical imaging always look for an increase in sensitivity and resolution among other practicability aspects. Within the same scope, in this work we report a versatile interference contrast imaging technique, with high phase sensitivity and a large field-of-view of several mm2. Sensitivity is increased through the use of a self-imaging non-resonant cavity, which causes photons to probe the sample in multiple rounds before being detected, where the configuration can be transmissive or reflective. Phase profiles can be resolved individually for each round thanks to a specially designed single-photon camera with time-of-flight capabilities and true pixels-off gating. Measurement noise is reduced by novel data processing combining t...
We demonstrate a novel method of two-dimensional differential interference contrast (DIC) microscopy...
Phase-contrast imaging is a method of imaging widely used in biomedical research and applications. I...
Phase contrast microscopy has revolutionized cell biology by rendering detailed images from within l...
© The Institution of Engineering and Technology 2015. A wide-field pseudo-heterodyne interference co...
Optical approaches to fluorescent, spectroscopic, and morphological imaging have made exceptional ad...
Phase-imaging techniques extract the optical path length information of a scene, whereas wavefront s...
A novel real image in-line laser holography enables a tuneable image contrast, edge sharpness, and v...
We demonstrate experimentally that optical phase conjugation can be used to focus light through stro...
This dissertation presents a quantitative phase imaging microscopy technique that combines phase-shi...
This Letter demonstrates that coherent diffractive imaging (CDI), in combination with phase-diversit...
When a sample is illuminated by an imaging field, its fingerprints are left on the amplitude and the...
We propose a novel approach for lensless single-shot phase retrieval, which provides pixel super-res...
Multi-modal X-ray imaging allows the extraction of phase and dark-field (or “Ultra-small Angle Scatt...
Phase contrast microscopy allows the study of highly transparent yet detail-rich specimens by produc...
We report on phase-dispersion optical tomography, a new imaging technique based on phase measurement...
We demonstrate a novel method of two-dimensional differential interference contrast (DIC) microscopy...
Phase-contrast imaging is a method of imaging widely used in biomedical research and applications. I...
Phase contrast microscopy has revolutionized cell biology by rendering detailed images from within l...
© The Institution of Engineering and Technology 2015. A wide-field pseudo-heterodyne interference co...
Optical approaches to fluorescent, spectroscopic, and morphological imaging have made exceptional ad...
Phase-imaging techniques extract the optical path length information of a scene, whereas wavefront s...
A novel real image in-line laser holography enables a tuneable image contrast, edge sharpness, and v...
We demonstrate experimentally that optical phase conjugation can be used to focus light through stro...
This dissertation presents a quantitative phase imaging microscopy technique that combines phase-shi...
This Letter demonstrates that coherent diffractive imaging (CDI), in combination with phase-diversit...
When a sample is illuminated by an imaging field, its fingerprints are left on the amplitude and the...
We propose a novel approach for lensless single-shot phase retrieval, which provides pixel super-res...
Multi-modal X-ray imaging allows the extraction of phase and dark-field (or “Ultra-small Angle Scatt...
Phase contrast microscopy allows the study of highly transparent yet detail-rich specimens by produc...
We report on phase-dispersion optical tomography, a new imaging technique based on phase measurement...
We demonstrate a novel method of two-dimensional differential interference contrast (DIC) microscopy...
Phase-contrast imaging is a method of imaging widely used in biomedical research and applications. I...
Phase contrast microscopy has revolutionized cell biology by rendering detailed images from within l...