Investigating the potential benefits of the use of magnetic fields in Inertial Confinement Fusion (ICF) experiments has given rise to new experimental platforms like the Magnetized Liner Inertial Fusion (MagLIF) approach at the Z-machine (Sandia National Laboratories), or its laser-driven equivalent at OMEGA (Laboratory for Laser Energetics). Implementing these platforms at MJ-scale laser facilities, such as the Laser MegaJoule (LMJ) or the National Ignition Facility (NIF), is crucial to reaching self-sustained nuclear fusion and enlarges the level of magnetization that can be achieved through a higher compression. In this paper, we present a complete design of an experimental platform for magnetized implosions using cylindrical targets at ...
The demonstration of magnetic field compression to many tens of megagauss in cylindrical implosions ...
This paper uses extended-magnetohydrodynamics (MHD) simulations to explore an extreme magnetized pla...
Thesis (Ph. D.)--University of Rochester. Dept. of Physics and Astronomy, 2013.Laser-Driven Flux Com...
Investigating the potential benefits of the use of magnetic fields in Inertial Confinement Fusion (I...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
The demonstration of magnetic field compression to many tens of megagauss in cylindrical implosions ...
This paper uses extended-magnetohydrodynamics (MHD) simulations to explore an extreme magnetized pla...
Thesis (Ph. D.)--University of Rochester. Dept. of Physics and Astronomy, 2013.Laser-Driven Flux Com...
Investigating the potential benefits of the use of magnetic fields in Inertial Confinement Fusion (I...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
International audienceInvestigating the potential benefits of the use of magnetic fields in inertial...
The demonstration of magnetic field compression to many tens of megagauss in cylindrical implosions ...
This paper uses extended-magnetohydrodynamics (MHD) simulations to explore an extreme magnetized pla...
Thesis (Ph. D.)--University of Rochester. Dept. of Physics and Astronomy, 2013.Laser-Driven Flux Com...