Laser-plasma interaction and hot electron generation play a crucial role in the context of inertial confinement fusion and in particular in the shock-ignition concept. Here we present a fully kinetic large-scale two-dimensional simulation studying laser-plasma interaction and hot electron generation in a relatively long and hot coronal plasma. The simulation shows saturation of the reflectivity of an intense spike pulse and absorption taking place close to a quarter critical density in particular, due to cavitation and stimulated Raman scattering. The signatures of steady two-plasmon decay are observed, but the hot electron number produced by this instability is low in comparison with the other two processes. The spectral and angular distri...
We present experimental results at intensities relevant to Shock Ignition obtained at the sub-ns Pra...
We present experimental results at intensities relevant to Shock Ignition obtained at the sub-ns Pra...
We use a sub-ignition scale laser, the 30 kJ Omega, and a novel shallow-cone target to study laser-p...
Thesis (Ph. D.)--University of Rochester. Dept. of Mechanical Engineering, 2016.This thesis studies ...
Abstract Shock Ignition is a two-step scheme to reach Inertial Confinement Fusion, where the precomp...
Laser-plasma interaction is investigated for conditions relevant for the shock-ignition (SI) scheme ...
Laser-plasma interaction is investigated for conditions relevant for the shock-ignition (SI) scheme ...
Two-dimensional particle-in-cell simulations for laser plasma interaction with laser intensity of 10...
Two-dimensional particle-in-cell simulations for laser plasma interaction with laser intensity of 10...
We report measurements of parametric instabilities and hot electron generation in a laser intensity ...
We report measurements of parametric instabilities and hot electron generation in a laser intensity ...
We use a subignition scale laser, the 30 kJ Omega, and a novel shallow-cone target to study laser-pl...
Laser–plasma interaction (LPI) at intensities 1015–1016 W cm2 is dominated by parametric instabiliti...
Shock ignition (SI) is an appealing approach in the inertial confinement scenario for the ignition a...
We present a formulation of the model of laser-plasma interaction (LPI) at hydrodynamical scales tha...
We present experimental results at intensities relevant to Shock Ignition obtained at the sub-ns Pra...
We present experimental results at intensities relevant to Shock Ignition obtained at the sub-ns Pra...
We use a sub-ignition scale laser, the 30 kJ Omega, and a novel shallow-cone target to study laser-p...
Thesis (Ph. D.)--University of Rochester. Dept. of Mechanical Engineering, 2016.This thesis studies ...
Abstract Shock Ignition is a two-step scheme to reach Inertial Confinement Fusion, where the precomp...
Laser-plasma interaction is investigated for conditions relevant for the shock-ignition (SI) scheme ...
Laser-plasma interaction is investigated for conditions relevant for the shock-ignition (SI) scheme ...
Two-dimensional particle-in-cell simulations for laser plasma interaction with laser intensity of 10...
Two-dimensional particle-in-cell simulations for laser plasma interaction with laser intensity of 10...
We report measurements of parametric instabilities and hot electron generation in a laser intensity ...
We report measurements of parametric instabilities and hot electron generation in a laser intensity ...
We use a subignition scale laser, the 30 kJ Omega, and a novel shallow-cone target to study laser-pl...
Laser–plasma interaction (LPI) at intensities 1015–1016 W cm2 is dominated by parametric instabiliti...
Shock ignition (SI) is an appealing approach in the inertial confinement scenario for the ignition a...
We present a formulation of the model of laser-plasma interaction (LPI) at hydrodynamical scales tha...
We present experimental results at intensities relevant to Shock Ignition obtained at the sub-ns Pra...
We present experimental results at intensities relevant to Shock Ignition obtained at the sub-ns Pra...
We use a sub-ignition scale laser, the 30 kJ Omega, and a novel shallow-cone target to study laser-p...