Effect of inactive impurity ions on deuteron beam‐fusion in fast ignition approach

B Khanbabaei, M Nazirzadeh - Contributions to Plasma Physics, 2022 - Wiley Online Library
The laser‐generated deuteron beam is a promising scheme for providing the required
energy for igniting a pre‐compressed fuel in the fast ignition method in the inertial …

[HTML][HTML] Simulation study of cone-in-shell target for indirect-drive ion fast ignition concept under the theory of an effective interaction potential

M Mehrangiz, S Khoshbinfar - Scientific Reports, 2023 - nature.com
The stopping power of charged particles released by the deuterium–tritium nuclear reactions
has been extensively studied in the weakly to moderately coupled plasma regimes. We have …

Investigation of optimal energy deposition of the aluminium ion beam in pre-compressed DT fuel

R Sotodeheian, M Mahdavi - Pramana, 2022 - Springer
Fast ignition (FI) by the laser-accelerated ion beams is an advanced possible remedy to
produce high energy in inertial confinement fusion. Low-divergence high-power beams can …

Longitudinal instability of the proton ignitor beam in a contaminated DT plasma

S Khoshbinfar, H Esmaeilpour - Physics of Plasmas, 2021 - pubs.aip.org
In this study, in the framework of hydrodynamics and kinetic models, the growth rate of
longitudinal instability in a proton beam-DT fuel plasma system with carbon contamination …

Criteria for Permissible Parameters of Hot Spot Ignition in Ion-doped Deuterium-Tritium Fue

F Mehdizadeh, S Khoshbinfar - Iranian Journal of Applied Physics, 2023 - jap.alzahra.ac.ir
At the stagnation time, fuel may impact by a variety of paths, including ablator materials,
Hohlraum wall, the interaction of the cone-guided lateral surface with imploding fuel, and …