Recent progress in surface instabilities of the Rayleigh-Taylor type at the ablative surface of laser-driven inertial fusion energy (IFE) target is reviewed with the objective of increasing the efficiency of IFE by reducing the growth rate of Rayleigh-Taylor Instability (RTI) using the following two mechanisms: (i) porous lining in the absence of electric force at the ablative surface of the IFE target, i.e. hydrodynamics and magnetohydrodynamics and (ii) porous lining of smart materials of nanostructure in the presence of electric force at the ablative surface of the IFE target, i.e. electrohydrodynamics. The former mechanism deals with two cases. Case 1 is the study of linear and nonlinear RTIs in an ordinary viscous fluid past a densely ...
The non-linear electrohydrodynamic RTI in presence of electric field bounded above by porous layer a...
The influence of external electric field on the Rayleigh Taylor instability in a confined domain is ...
Experimental studies are presented of laser-produced plasmas that are directly relevant to Inertial ...
Rayleigh-Taylor instability of a laser accelerated ablative surface of a thin target shell with an i...
In recent years there has been a considerable theoretical and experimental interest in a laser drive...
Rayleigh-Taylor instability of a laser accelerated ablative surface of a thin target shell with an i...
This paper is concerned with the study of the Electrorheological Rayleigh-Taylor instability (ERTI) ...
The Rayleigh-Taylor instability (RTI) of a laser-accelerated ablative surface of a thin plasma layer...
This paper is concerned with the study of the Electrorheological Rayleigh-Taylor instability (ERTI) ...
This paper is concerned with the study of the Electrorheological Kelvin-Helmholtz Instability (EKHI)...
Electrohydrodynamic Rayleigh - Talyor instability (ERTI) at the interface region between a thin poor...
One of the main design objectives for Inertial Confinement Fusion is the specification of surface ro...
Thesis (Ph. D.)--University of Rochester. Dept. of Physics and Astronomy, 2012.In direct-drive inert...
Shock Ignition (SI) [1,2] is a promising approach to Inertial Confinement Fusion. The strength of SI...
The linear evolution of the Rayleigh-Taylor instability (RTI) at the ablation front of a laser irrad...
The non-linear electrohydrodynamic RTI in presence of electric field bounded above by porous layer a...
The influence of external electric field on the Rayleigh Taylor instability in a confined domain is ...
Experimental studies are presented of laser-produced plasmas that are directly relevant to Inertial ...
Rayleigh-Taylor instability of a laser accelerated ablative surface of a thin target shell with an i...
In recent years there has been a considerable theoretical and experimental interest in a laser drive...
Rayleigh-Taylor instability of a laser accelerated ablative surface of a thin target shell with an i...
This paper is concerned with the study of the Electrorheological Rayleigh-Taylor instability (ERTI) ...
The Rayleigh-Taylor instability (RTI) of a laser-accelerated ablative surface of a thin plasma layer...
This paper is concerned with the study of the Electrorheological Rayleigh-Taylor instability (ERTI) ...
This paper is concerned with the study of the Electrorheological Kelvin-Helmholtz Instability (EKHI)...
Electrohydrodynamic Rayleigh - Talyor instability (ERTI) at the interface region between a thin poor...
One of the main design objectives for Inertial Confinement Fusion is the specification of surface ro...
Thesis (Ph. D.)--University of Rochester. Dept. of Physics and Astronomy, 2012.In direct-drive inert...
Shock Ignition (SI) [1,2] is a promising approach to Inertial Confinement Fusion. The strength of SI...
The linear evolution of the Rayleigh-Taylor instability (RTI) at the ablation front of a laser irrad...
The non-linear electrohydrodynamic RTI in presence of electric field bounded above by porous layer a...
The influence of external electric field on the Rayleigh Taylor instability in a confined domain is ...
Experimental studies are presented of laser-produced plasmas that are directly relevant to Inertial ...