| Literature DB >> 21034057 |
Shinsuke Fujioka1, Takashi Fujiwara, Minoru Tanabe, Hiroaki Nishimura, Hideo Nagatomo, Shinji Ohira, Yuichi Inubushi, Hiroyuki Shiraga, Hiroshi Azechi.
Abstract
Ultrafast, two-dimensional x-ray imaging is an important diagnostics for the inertial fusion energy research, especially in investigating implosion dynamics at the final stage of the fuel compression. Although x-ray radiography was applied to observing the implosion dynamics, intense x-rays emitted from the high temperature and dense fuel core itself are often superimposed on the radiograph. This problem can be solved by coupling the x-ray radiography with monochromatic x-ray imaging technique. In the experiment, 2.8 or 5.2 keV backlight x-rays emitted from laser-irradiated polyvinyl chloride or vanadium foils were selectively imaged by spherically bent quartz crystals with discriminating the out-of-band emission from the fuel core. This x-ray radiography system achieved 24 μm and 100 ps of spatial and temporal resolutions, respectively.Entities:
Year: 2010 PMID: 21034057 DOI: 10.1063/1.3494383
Source DB: PubMed Journal: Rev Sci Instrum ISSN: 0034-6748 Impact factor: 1.523