Published December 17, 2012 | Version v1
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Design and realization of a hard X-ray prototype imager with spectral selection for the Laser MegaJoule

Description

In the Laser MegaJoule (LMJ) project context, measurements need to be done by diagnostics in order to achieve ignition. Amongst these diagnostics, some of the X-ray imagers will have to observe hydrodynamics instabilities on the micron balloon surface. X-ray radiography or self-emission imaging are the techniques used to obtain such imaging. None of the existing X-ray imagers designed for LMJ is currently able to record this kind of image. The X-ray imager designed during this thesis will have to achieve a high resolution image at high energy and will have to meet all the requirements subsequent to its use on a large facility like LMJ. We have studied and optimized an already existing diagnostic: EHRXI. We have extended its covered spectral range up to 12 keV. We measured its resolution that is under 5 μm in a 1 mm diameter field of view. This diagnostic has been successfully used on laser experiments in ELFIE 100 TW and OMEGA. After analyzing the performances and weaknesses of EHRXI, we were able to design a LMJ diagnostic prototype: Merssix. This microscope will achieve a resolution under 5 μm in a 500 μm diameter field of view with a covered spectral range up to 22 keV. Merssix has been specifically designed for LMJ and adapted to fit its experimental framework. Its design allows it in particular to be used for radiography in a complex X-ray producing environment. (author)

Abstract (French)

Dans le cadre du projet Laser MegaJoule (LMJ), des chaines de mesure, appelees diagnostics, sont necessaires a la qualification de l'atteinte de l'ignition. Parmi ces diagnostics, des imageurs X devront observer le developpement d'instabilites hydrodynamiques a la surface du microballon. L'imagerie de ces instabilites sera faite dans le domaine X par radiographie ou en utilisant l'emission propre de la cible. Aucun imageur X concu aujourd'hui pour le LMJ ne permet de realiser une telle image. L'imageur X developpe dans cette these devra donc realiser une image a haute resolution et a haute energie tout en respectant les contraintes de fonctionnement lie a une installation telle que le LMJ. Nous avons tout d'abord etudie et ameliore un diagnostic existant: EHRXI. Nous avons optimise la bande d'energie X utile a l'imagerie par ce diagnostic en l'etendant jusqu'a 12 keV. Nous avons obtenu des resolutions inferieures a 5 μm dans un champ de 1 mm de diametre. Ce diagnostic a ete deploye avec succes sur les installations laser ELFIE 100 TW et OMEGA. Avec le retour d'experience obtenu avec EHRXI nous avons concu un prototype de diagnostic pour le LMJ: Merssix. Ce microscope aura une resolution inferieure a 5 μm dans un champ de 500 μm de diametre pour des energies s'etendant jusqu'a 22 keV. Merssix a ete pense et adapte aux conditions experimentales du LMJ. Sa conception met notamment en jeu une selection spectrale pour permettre une utilisation en radiographie en presence d'un environnement X complexe

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Additional details

Additional titles

Original title (French)
Conception et realisation d'un prototype d'imageur X durs a selection spectrale pour le Laser MegaJoule

Publishing Information

Imprint Pagination
246 p.
Report number
FRCEA-TH--6107

INIS

Country of Publication
France
Country of Input or Organization
France
INIS RN
46133721
Subject category
S46: INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY;
Resource subtype / Literary indicator
Thesis
Descriptors DEI
DESIGN; DIAGNOSTIC TECHNIQUES; HARD X RADIATION; HYDRODYNAMICS; IGNITION; INSTABILITY
Descriptors DEC
ELECTROMAGNETIC RADIATION; FLUID MECHANICS; IONIZING RADIATIONS; MECHANICS; RADIATIONS; X RADIATION

Optional Information

Notes
94 refs.; Available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS-NKM website for current contact and E-mail addresses: http://www.iaea.org/inis/Contacts/; Also available from Bibliotheque Centrale de l'Ecole Polytechnique, 91128 Palaiseau Cedex (France)