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Radiation of stationary spherical ‘corona’ formed by heavy-ion beams

Published online by Cambridge University Press:  09 March 2009

Yu. V. Afanasiev
Affiliation:
P. N. Lebedev Phys. Inst., USSR Acad. Sci., Leninsky pr. 53, Moscow
V. A. Isakov
Affiliation:
P. N. Lebedev Phys. Inst., USSR Acad. Sci., Leninsky pr. 53, Moscow
K. A. Khachiyan
Affiliation:
P. N. Lebedev Phys. Inst., USSR Acad. Sci., Leninsky pr. 53, Moscow

Abstract

The problem of heavy-ion beam energy conversion into the plasma self-radiation of the spherical target is considered by using the radiative conductivity approximation. It is shown that there is a single parameter γ which determines the spherical ‘corona’ structure and has the meaning of the ratio: the ion range/the effective heat range. The conversion coefficient increases with the increase in the parameter γ and becomes ∼ 1, when γ ≃ 102. Typical beam and target parameters of modern HIF designs correspond to γ ≃ 10 and conversion coefficients >50%. Thus, at quasistationary stage of the ‘corona’ expansion the target acceleration and implosion regime is basically the radiative one.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1988

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References

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