Simulations are presented of ignition-scale fast ignition targets with the integrated Zuma-Hydra PIC-hydrodynamic capability. We consider a spherical DT fuel assembly with a carbon cone, and an artificially-collimated fast electron source. We study the role of E and B fields and the fast electron energy spectrum. For mono-energetic 1.5 MeV fast electrons, without E and B fields, ignition can be achieved with fast electron energy Efig = 30kJ. This is 3.5× the minimal deposited ignition energy of 8.7 kJ for our fuel density of 450 g/cm3. Including E and B fields with the resistive Ohm's law E = ηJb gives Efig = 20kJ, while using the full Ohm's law gives Efig > 40 kJ. This is due to magnetic self-guiding in the former case, and ∇n ×∇T magnetic...
The derivation of the ignition energy for fast ignition inertial confinement fusion is reviewed and ...
In recent years, several schemes for laser-driven fast ignition (FI) of inertial confinement fusion ...
The controlled production of a local hot spot in supercompressed deuterium + tritium fuel is examine...
Simulations are presented of ignition-scale fast ignition targets with the integrated Zuma-Hydra PIC...
The fast ignition (FI) concept requires the generation of a compact, dense, pure fuel mass accessibl...
The reentrant cone approach to Fast Ignition, an advanced Inertial Confinement Fusion scheme, remain...
A reentrant cone concept for efficient heating of high-density plasmas has been studied as an advanc...
The reentrant cone approach to Fast Ignition, an advanced Inertial Confinement Fusion scheme, remain...
Abstract Three-dimensional (3D) hybrid PIC simulations are presented to study electron energy transp...
In the fast ignition concept, assembled fuel is ignited through a separate high intensity laser puls...
The cone-guided scheme for fast-ignition inertial confinement fusion (ICF)1,2 provides the potential...
The viability of fast-ignition (FI) inertial confinement fusion hinges on the efficient transfer of ...
The Fast Ignitor is an alternate approach to ICF in which short pulse lasers are used to initiate bu...
Three-dimensional hybrid PIC simulations are presented to study electron energy transport and deposi...
In recent years, several schemes for laser-driven fast ignition (FI) of inertial confinement fusion ...
The derivation of the ignition energy for fast ignition inertial confinement fusion is reviewed and ...
In recent years, several schemes for laser-driven fast ignition (FI) of inertial confinement fusion ...
The controlled production of a local hot spot in supercompressed deuterium + tritium fuel is examine...
Simulations are presented of ignition-scale fast ignition targets with the integrated Zuma-Hydra PIC...
The fast ignition (FI) concept requires the generation of a compact, dense, pure fuel mass accessibl...
The reentrant cone approach to Fast Ignition, an advanced Inertial Confinement Fusion scheme, remain...
A reentrant cone concept for efficient heating of high-density plasmas has been studied as an advanc...
The reentrant cone approach to Fast Ignition, an advanced Inertial Confinement Fusion scheme, remain...
Abstract Three-dimensional (3D) hybrid PIC simulations are presented to study electron energy transp...
In the fast ignition concept, assembled fuel is ignited through a separate high intensity laser puls...
The cone-guided scheme for fast-ignition inertial confinement fusion (ICF)1,2 provides the potential...
The viability of fast-ignition (FI) inertial confinement fusion hinges on the efficient transfer of ...
The Fast Ignitor is an alternate approach to ICF in which short pulse lasers are used to initiate bu...
Three-dimensional hybrid PIC simulations are presented to study electron energy transport and deposi...
In recent years, several schemes for laser-driven fast ignition (FI) of inertial confinement fusion ...
The derivation of the ignition energy for fast ignition inertial confinement fusion is reviewed and ...
In recent years, several schemes for laser-driven fast ignition (FI) of inertial confinement fusion ...
The controlled production of a local hot spot in supercompressed deuterium + tritium fuel is examine...