Optimal Control Theory is used to analyze the laser-heating of plasmas confined in strong solenoidal magnetic fields. Heating strategies that minimize a linear combination of heating time and total energy spent by the laser system are found. A numerical example is used to illustrate the theory. Results of this example show that by an appropriate modulation of the laser intensity, significant savings in the laser energy are possible with only slight increases in the heating time. However, results may depend strongly on the initial state of the plasma and on the final ion temperature.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/26906/1/0000472.pd
The two-stage electron acceleration/ heating model (Wu et al 2017 Nucl. Fusion 57 016007 and Wu et a...
International audienceThe possibility of choosing thermodynamic trajectories for laser excited matte...
The peak temperature in the corona of plasma ejected by a laser-irradiated slab is discussed in term...
The optimal laser heating of the plasma ions is studied using optimal control theory. The cases of c...
The laser heating of a plasma with constant density is analyzed using optimal control theory. Heatin...
Abstract. The laser heating of a plasma with constant density is analyzed using optimal control theo...
Abstract: Heating of plasma electrons by an extraordinary laser wave at the double upper hybrid freq...
A single fluid, two−temperature, one−dimensional magnetohydrodynamic model has been developed to des...
A laser ion source can provide high current, highly charged ions with a simple structure. However, i...
The ion heating mechanism in the context of laser interacting with plasma immersed in a strong magne...
In this thesis, we study optimal control problems of partial differential equations withan applicati...
International audienceUsing an optimal control hydrodynamic modeling approach and irradiation adapti...
Inertial confinement fusion experiments using laser beams have reported the emission of hot electron...
The work presented in this thesis investigates energy transport in laser irradiated solid targets co...
Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала.Laser cooling of i...
The two-stage electron acceleration/ heating model (Wu et al 2017 Nucl. Fusion 57 016007 and Wu et a...
International audienceThe possibility of choosing thermodynamic trajectories for laser excited matte...
The peak temperature in the corona of plasma ejected by a laser-irradiated slab is discussed in term...
The optimal laser heating of the plasma ions is studied using optimal control theory. The cases of c...
The laser heating of a plasma with constant density is analyzed using optimal control theory. Heatin...
Abstract. The laser heating of a plasma with constant density is analyzed using optimal control theo...
Abstract: Heating of plasma electrons by an extraordinary laser wave at the double upper hybrid freq...
A single fluid, two−temperature, one−dimensional magnetohydrodynamic model has been developed to des...
A laser ion source can provide high current, highly charged ions with a simple structure. However, i...
The ion heating mechanism in the context of laser interacting with plasma immersed in a strong magne...
In this thesis, we study optimal control problems of partial differential equations withan applicati...
International audienceUsing an optimal control hydrodynamic modeling approach and irradiation adapti...
Inertial confinement fusion experiments using laser beams have reported the emission of hot electron...
The work presented in this thesis investigates energy transport in laser irradiated solid targets co...
Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала.Laser cooling of i...
The two-stage electron acceleration/ heating model (Wu et al 2017 Nucl. Fusion 57 016007 and Wu et a...
International audienceThe possibility of choosing thermodynamic trajectories for laser excited matte...
The peak temperature in the corona of plasma ejected by a laser-irradiated slab is discussed in term...