Title of article :
Induction accelerator architectures for heavy-ion fusion
Author/Authors :
Barnard، نويسنده , , J.J. and Bangerter، نويسنده , , R.O. and Faltens، نويسنده , , A. and Fessenden، نويسنده , , T.J. and Friedman، نويسنده , , A. and Lee، نويسنده , , E.P. and Logan، نويسنده , , B.G. and Lund، نويسنده , , S.M. and Meier، نويسنده , , W. and Sharp، نويسنده , , W.M. and Yu، نويسنده , , S.S.، نويسنده ,
Pages :
11
From page :
218
To page :
228
Abstract :
The approach to heavy-ion-driven inertial fusion studied most extensively in the US uses induction modulators and cores to accelerate and confine the beam longitudinally. The intrinsic peak-current capabilities of induction machines, together with their flexible pulse formats, provide a suitable match to the high peak-power requirement of a heavy-ion fusion target. However, as in the RF case, where combinations of linacs, synchrotrons, and storage rings offer a number of choices to be examined in designing an optimal system, the induction approach also allows a number of architectures, from which choices must be made. iew the main classes of architecture for induction drivers that have been studied to date. The main choice of accelerator structure is that between the linac and the recirculator, the latter being composed of several rings. Hybrid designs are also possible. Other design questions include which focusing system (electric quadrupole, magnetic quadrupole, or solenoid) to use, whether or not to merge beams, and what number of beams to use – all of which must be answered as a function of ion energy throughout the machine. Also, the optimal charge state and mass must be chosen. These different architectures and beam parameters lead to different emittances and imply different constraints on the final focus. The advantages and uncertainties of these various architectures will be discussed.
Keywords :
Heavy-ion fusion , Induction linacs , Recirculations , Inertial fusion
Journal title :
Astroparticle Physics
Record number :
2006399
Link To Document :
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