Quantitative X-ray phase imaging with a lateral shearing interferometer. Application to the hard X-rays

Since Röntgen discovered X-rays, X-ray imaging systems are based on absorption contrast. This technique is inefficient for weakly absorbing objects. As a result, X-ray standard radiography can detect bones lesions, but cannot detect ligament lesions.However, phase contrast imaging can overcome this limitation. Since the years 2000, relying on former works of opticians, X-ray scientists are developing phase sensitive devices compatible with industrial applications such as medical imaging or non destructive control.Standard architectures for interferometry are challenging to implement in the X-ray domain.This is the reason why grating based interferometers became the most promising devices to envision industrial applications. They provided the first x-ray phase contrast images of living human samples.Nevertheless, actual grating based architectures require the use of at least two gratings, and are challenging to adapt on an industrial product. So, the aim of my thesis was to develop a single phase grating interferometer. I demonstrated that such a device can provide achromatic and propagation invariant interference patterns. I used this interferometer to perform quantitative phase contrast imaging of a biological fossil sample and x-ray flat mirror metrology.

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Source https://theses.hal.science/tel-00917590
Author Rizzi, Julien
Maintainer CCSD
Last Updated May 7, 2026, 20:22 (UTC)
Created May 7, 2026, 20:22 (UTC)
Identifier NNT: 2013PA112248
Language fr
Rights https://about.hal.science/hal-authorisation-v1/
contributor ONERA - The French Aerospace Lab [Palaiseau] ; ONERA-Université Paris Saclay (COmUE)
creator Rizzi, Julien
date 2013-11-08T00:00:00
harvest_object_id 1d2eb6d7-44d8-4fd5-a5cb-62c2f0cef79c
harvest_source_id 3374d638-d20b-4672-ba96-a23232d55657
harvest_source_title test moissonnage SELUNE
metadata_modified 2026-03-31T00:00:00
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