The effects of defocusing a high intensity pulse of laser light on the generation of hot electrons in a cone are investigated using particle-in-cell simulations. The results indicate that defocused laser light can soften the electron energy spectrum and increase the coupling efficiency compared to the use of a laser in tight focus. It is shown that this is a consequence of the density profile of plasma produced by the laser prepulse, which is less dense in the case of the defocused laser. The relevance of this result to fast ignition inertial confinement fusion is discussed
The reentrant cone approach to Fast Ignition, an advanced Inertial Confinement Fusion scheme, remain...
Thesis (Ph. D.)--University of Rochester. Dept. of Mechanical Engineering, 2016.This thesis studies ...
In the fast ignition concept, assembled fuel is ignited through a separate high intensity laser puls...
The viability of fast-ignition (FI) inertial confinement fusion hinges on the efficient transfer of ...
This work was supported in part by DTRA under Basic Research Award No. HDTRA1-10-10077.Here, we show...
Experimental results from copper cones irradiated with ultra-intense laser light are presented. Spat...
Hollow cone-shaped overdense plasma targets were used to investigate the generation and transport of...
The cone-guided fast ignition approach to Inertial Confinement Fusion requires laser-accelerated rel...
This thesis described the generation and transportation of hot electron in fast ignition experiments...
Long-scale preformed plasmas are generated inside the cone by the pre-pulse of the heating laser in ...
The generation of energetic electron and proton beams was studied from the interaction of high inten...
An integrated experiment relevant to fast ignition. A Cu-doped deuterated polymer spherical shell ta...
We present experimental and numerical results on the propagation and energy deposition of laser-gene...
Cone-guided fast ignition laser fusion depends critically on details of the interaction of an intens...
Significantly collimated fast electron beam with a divergence angle 10° (FWHM) is observed when an u...
The reentrant cone approach to Fast Ignition, an advanced Inertial Confinement Fusion scheme, remain...
Thesis (Ph. D.)--University of Rochester. Dept. of Mechanical Engineering, 2016.This thesis studies ...
In the fast ignition concept, assembled fuel is ignited through a separate high intensity laser puls...
The viability of fast-ignition (FI) inertial confinement fusion hinges on the efficient transfer of ...
This work was supported in part by DTRA under Basic Research Award No. HDTRA1-10-10077.Here, we show...
Experimental results from copper cones irradiated with ultra-intense laser light are presented. Spat...
Hollow cone-shaped overdense plasma targets were used to investigate the generation and transport of...
The cone-guided fast ignition approach to Inertial Confinement Fusion requires laser-accelerated rel...
This thesis described the generation and transportation of hot electron in fast ignition experiments...
Long-scale preformed plasmas are generated inside the cone by the pre-pulse of the heating laser in ...
The generation of energetic electron and proton beams was studied from the interaction of high inten...
An integrated experiment relevant to fast ignition. A Cu-doped deuterated polymer spherical shell ta...
We present experimental and numerical results on the propagation and energy deposition of laser-gene...
Cone-guided fast ignition laser fusion depends critically on details of the interaction of an intens...
Significantly collimated fast electron beam with a divergence angle 10° (FWHM) is observed when an u...
The reentrant cone approach to Fast Ignition, an advanced Inertial Confinement Fusion scheme, remain...
Thesis (Ph. D.)--University of Rochester. Dept. of Mechanical Engineering, 2016.This thesis studies ...
In the fast ignition concept, assembled fuel is ignited through a separate high intensity laser puls...