Title of article :
Direct–indirect mixed implosion mode in heavy ion inertial fusion
Author/Authors :
Kawata، نويسنده , , S. and Miyazawa، نويسنده , , K. and Kikuchi، نويسنده , , T. and Someya، نويسنده , , T.، نويسنده ,
Pages :
5
From page :
332
To page :
336
Abstract :
In order to realize an effective implosion, beam illumination non-uniformity on a fuel target must be suppressed less than a few percent. In this study, a direct–indirect mixture implosion mode is proposed and discussed in heavy ion beam (HIB) inertial confinement fusion (HIF) in order to release sufficient fusion energy in a robust manner. On the other hand, the HIB illumination non-uniformity depends strongly on a target displacement dz from the center of a fusion reactor chamber. In a direct-driven implosion mode, dz of ∼20 μm was tolerable, and in an indirect-implosion mode, dz of ∼100 μm was allowable. In the direct–indirect mixture mode target, a low-density foam layer is inserted, and the radiation energy is confined in the foam layer. In the foam layer, the radiation transport is expected to smooth the HIB illumination non-uniformity in the lateral direction. Two-dimensional implosion simulations are performed, and show that the HIB illumination non-uniformity is well smoothed in the direct–indirect mixture target. Our simulation results present that a large pellet displacement of approximately a few hundred microns is allowed in order to obtain a sufficient fusion energy output in HIF.
Keywords :
inertial confinement fusion , Heavy ion beam , radiation transport , Implosion non-uniformity , Pellet gain
Journal title :
Astroparticle Physics
Record number :
2028976
Link To Document :
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