
X-ray radiography based on the phase-contrast imaging with using LiF detector
Author(s) -
Sergey Makarov,
T. A. Pikuz,
А. В. Бузмаков,
A. P. Chernyaev,
P. Mabey,
T. Vinci,
G. Rigon,
B. Albertazzi,
A. Casner,
V. Bouffetier,
R. Kodama,
Kento Katagiri,
N. Kamimura,
Yoshikuni Umeda,
Norimasa Ozaki,
É. Falize,
Olivier Poujade,
Tadashi Togashi,
Makina Yabashi,
T. Yabuuchi,
Yuichi Inubushi,
Kohei Miyanishi,
Keiichi Sueda,
M. J.-E. Manuel,
G. Gregori,
M. Kœnig,
S. A. Pikuz
Publication year - 2021
Publication title -
journal of physics. conference series
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.21
H-Index - 85
eISSN - 1742-6596
pISSN - 1742-6588
DOI - 10.1088/1742-6596/1787/1/012027
Subject(s) - lithium fluoride , detector , phase contrast imaging , optics , visibility , radiography , contrast (vision) , phase (matter) , materials science , x ray , physics , phase contrast microscopy , nuclear physics , quantum mechanics
An x-ray radiography technique based upon phase contrast imaging using a lithium fluoride detector has been demonstrated for goals of high energy density physics experiments. Based on the simulation of propagation an x-ray free-electron laser beam through a test-object, the visibility of phase-contrast image depending on an object-detector distance was investigated. Additionally, the metrological capabilities of a lithium fluoride crystal as a detector were demonstrated.