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10.3390/ma8125471

http://scihub22266oqcxt.onion/10.3390/ma8125471
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C5458859!5458859!28793722
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suck abstract from ncbi


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pmid28793722      Materials+(Basel) 2015 ; 8 (12): 8452-9
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  • Progress in Mirror-Based Fusion Neutron Source Development #MMPMID28793722
  • Anikeev AV; Bagryansky PA; Beklemishev AD; Ivanov AA; Kolesnikov EY; Korzhavina MS; Korobeinikova OA; Lizunov AA; Maximov VV; Murakhtin SV; Pinzhenin EI; Prikhodko VV; Soldatkina EI; Solomakhin AL; Tsidulko YA; Yakovlev DV; Yurov DV
  • Materials (Basel) 2015[Dec]; 8 (12): 8452-9 PMID28793722show ga
  • The Budker Institute of Nuclear Physics in worldwide collaboration has developed a project of a 14 MeV neutron source for fusion material studies and other applications. The projected neutron source of the plasma type is based on the gas dynamic trap (GDT), which is a special magnetic mirror system for plasma confinement. Essential progress in plasma parameters has been achieved in recent experiments at the GDT facility in the Budker Institute, which is a hydrogen (deuterium) prototype of the source. Stable confinement of hot-ion plasmas with the relative pressure exceeding 0.5 was demonstrated. The electron temperature was increased up to 0.9 keV in the regime with additional electron cyclotron resonance heating (ECRH) of a moderate power. These parameters are the record for axisymmetric open mirror traps. These achievements elevate the projects of a GDT-based neutron source on a higher level of competitive ability and make it possible to construct a source with parameters suitable for materials testing today. The paper presents the progress in experimental studies and numerical simulations of the mirror-based fusion neutron source and its possible applications including a fusion material test facility and a fusion-fission hybrid system.
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