Abstract
Edge illumination X-ray phase contrast imaging techniques are capable of quantitative retrieval of differential phase, absorption and X-ray scattering. We have recently developed a series of approaches enabling high-resolution implementations, both using synchrotron radiation and laboratory-based set-ups. Three-dimensional reconstruction of absorption, phase and dark-field can be achieved with a simple rotation of the sample. All these approaches share a common trait which consists in the use of an absorber that shapes the radiation field, in order to make the phase modulations introduced by the sample detectable. This enables a well-defined and high-contrast structuring of the radiation field as well as an accurate modelling of the effects that are related to the simultaneous use of a wide range of energies. Moreover, it can also be adapted for use with detectors featuring large pixel sizes, which could be desirable when a high detection efficiency is important.
Cite
CITATION STYLE
Endrizzi, M., Vittoria, F. A., Diemoz, P. C., Kallon, G. K., Basta, D., Zamir, A., … Olivo, A. (2017). Simple and robust synchrotron and laboratory solutions for high-resolution multimodal X-ray phase-based imaging. In Journal of Physics: Conference Series (Vol. 849). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/849/1/012040
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.