Paper
12 December 2003 Theoretical-numerical research of fast ignition in nondegenerate plasma at inertial fusion
Dmitrij V. Il'in, Aleksey A. Levkovskii, Sergei Yu Gus'kov, Vladislav B. Rozanov, Vladimir E. Sherman, Aleksandr A. Andreev, Oleg B. Vygovskii
Author Affiliations +
Proceedings Volume 5228, ECLIM 2002: 27th European Conference on Laser Interaction with Matter; (2003) https://doi.org/10.1117/12.536766
Event: ECLIM 2002: 27th European conference on Laser Interaction with Matter, 2002, Moscow, Russian Federation
Abstract
By means of Monte-Carlo modeling of thermonuclear (TN) burn wave propagation in spherical laser deuterium-tritium targets criteria of fast ignition are elaborated and corresponding energy gain is evaluated. The critical ignitor parameters are calculated both for homogeneous and inhomogeneous targets with different parameters of main fuel. It is shown that in strong inhomogeneous target plasma the minimum values of required ignition energy could increase twice. Besides it is shown that critical values of ignitor dimension and energy are dependent on different distribution of energy between the electrons and ions of ignitor plasma. If all the additional thermal energy is coupled to ignitor electrons the value of corresponding ignition energy is 3 ÷ 4 times as many as in the case of equal initial temperature of ignitor ions and electrons. The overcritical burn efficiency and target gain is practically independent on ignition origin and may be evaluated with a good accuracy by the simple asymptotic expression.
© (2003) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Dmitrij V. Il'in, Aleksey A. Levkovskii, Sergei Yu Gus'kov, Vladislav B. Rozanov, Vladimir E. Sherman, Aleksandr A. Andreev, and Oleg B. Vygovskii "Theoretical-numerical research of fast ignition in nondegenerate plasma at inertial fusion", Proc. SPIE 5228, ECLIM 2002: 27th European Conference on Laser Interaction with Matter, (12 December 2003); https://doi.org/10.1117/12.536766
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Plasma

Fusion energy

Electrons

Ions

Combustion

Particles

Spherical lenses

Back to Top