Back to Search
Start Over
Magnetized directly-driven ICF capsules: increased instability growth from non-uniform laser drive
- Publication Year :
- 2020
- Publisher :
- IOP Publishing, 2020.
-
Abstract
- Simulations anticipate increased perturbation growth from non-uniform laser heating for magnetized direct-drive implosions. At the capsule pole, where the magnetic field is normal to the ablator surface, the field remains in the conduction zone and suppresses non-radial thermal conduction; in unmagnetized implosions this non-radial heat-flow is crucial in mitigating laser heating imbalances. Single-mode simulations show the magnetic field particularly amplifying short wavelength perturbations, whose behavior is dominated by thermal conduction. The most unstable wavelength can also become shorter. 3D multi-mode simulations of the capsule pole reinforce these findings, with increased perturbation growth anticipated across a wide range of scales. The results indicate that high-gain spherical direct-drive implosions require greater constraints on the laser heating uniformity when magnetized.
- Subjects :
- Physics
Nuclear and High Energy Physics
Science & Technology
business.industry
magneto-inertial fusion
Fluids & Plasmas
alternative ignition concepts
Magneto-inertial fusion
Condensed Matter Physics
Laser
Instability
RAYLEIGH-TAYLOR INSTABILITY
law.invention
Optics
Physics, Fluids & Plasmas
law
Physics::Plasma Physics
Physical Sciences
0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
direct-drive ICF
business
magnetic fields in ICF
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....798656654a55f67c0f17fcc9fe1260e8