This paper uses extended-magnetohydrodynamics (MHD) simulations to explore an extreme magnetized plasma regime realizable by cylindrical implosions on the OMEGA laser facility. This regime is characterized by highly compressed magnetic fields (greater than 10 kT across the fuel), which contain a significant proportion of the implosion energy and induce large electrical currents in the plasma. Parameters governing the different magnetization processes such as Ohmic dissipation and suppression of instabilities by magnetic tension are presented, allowing for optimization of experiments to study specific phenomena. For instance, a dopant added to the target gas-fill can enhance magnetic flux compression while enabling spectroscopic diagnosis of...
Investigating the potential benefits of the use of magnetic fields in Inertial Confinement Fusion (I...
The demonstration of magnetic field compression to many tens of megagauss in cylindrical implosions ...
Thesis (Ph. D.)--University of Rochester. Dept. of Physics and Astronomy, 2013.Laser-Driven Flux Com...
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...
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...
Investigating the potential benefits of the use of magnetic fields in Inertial Confinement Fusion (I...
The demonstration of magnetic field compression to many tens of megagauss in cylindrical implosions ...
Thesis (Ph. D.)--University of Rochester. Dept. of Physics and Astronomy, 2013.Laser-Driven Flux Com...
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...
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...
Investigating the potential benefits of the use of magnetic fields in Inertial Confinement Fusion (I...
The demonstration of magnetic field compression to many tens of megagauss in cylindrical implosions ...
Thesis (Ph. D.)--University of Rochester. Dept. of Physics and Astronomy, 2013.Laser-Driven Flux Com...