A numerical model of the ion-hose instability for long-pulse electron linacs is presented, where the ion motion is represented by fluid parameters. In order to gain extra numerical stability, the fluid behavior of the ions is evolved via particle-in-cell (PIC) techniques. This methodology provides a much faster simulation than a full PIC calculation, allowing for end-to-end simulations of the ion-hose instability in actual linear accelerator configurations. After the description of the simulation model and some simple test cases, the instability is analyzed for a variety of nominal accelerator transport conditions. Simulations of the instability are provided for sections of the DARHT long-pulse accelerator that show different growth regimes...
The propagation of an intense relativistic electron beam through a gas that is self-ionized by the b...
The first part of this thesis investigates the growth of ion density perturbations in large-amplitud...
Experimental studies of self-focused, high-current electron-beam propagation phenomena are compared ...
The ion-hose instability is a transverse electrostatic instability which occurs on electron beams in...
The ion-hose (or fast-ion) instability sets limits on the allowable vacuum in a long-pulse, high cur...
A simple model is adopted to study the hose instability of an intense relativistic electron beam in ...
We present a new hybrid algorithm implemented in the code CHIEF ( Code Hybrid with Inertial Electron...
The growth of the resistive hose instability for intense proton beams is examined using three-dimens...
The hose instability is a long standing challenge for plasma-wakefield accelerators (PWFAs). It is s...
Current models predict the hose instability to crucially limit the applicability of plasma-wakefield...
In this dissertation, a fully object-oriented, fully relativistic, multidimensional Particle-In-Cell...
Plasma neutralization of an intense ion pulse is of interest for many applications, including plasma...
The electron-proton instability of a long, intense, and partially neutralized proton bunch is studie...
The electron-proton instability of a long, intense, and partially neutralized proton bunch is studie...
A physical model is presented for the study of parametric instabilities in inertial confinement fusi...
The propagation of an intense relativistic electron beam through a gas that is self-ionized by the b...
The first part of this thesis investigates the growth of ion density perturbations in large-amplitud...
Experimental studies of self-focused, high-current electron-beam propagation phenomena are compared ...
The ion-hose instability is a transverse electrostatic instability which occurs on electron beams in...
The ion-hose (or fast-ion) instability sets limits on the allowable vacuum in a long-pulse, high cur...
A simple model is adopted to study the hose instability of an intense relativistic electron beam in ...
We present a new hybrid algorithm implemented in the code CHIEF ( Code Hybrid with Inertial Electron...
The growth of the resistive hose instability for intense proton beams is examined using three-dimens...
The hose instability is a long standing challenge for plasma-wakefield accelerators (PWFAs). It is s...
Current models predict the hose instability to crucially limit the applicability of plasma-wakefield...
In this dissertation, a fully object-oriented, fully relativistic, multidimensional Particle-In-Cell...
Plasma neutralization of an intense ion pulse is of interest for many applications, including plasma...
The electron-proton instability of a long, intense, and partially neutralized proton bunch is studie...
The electron-proton instability of a long, intense, and partially neutralized proton bunch is studie...
A physical model is presented for the study of parametric instabilities in inertial confinement fusi...
The propagation of an intense relativistic electron beam through a gas that is self-ionized by the b...
The first part of this thesis investigates the growth of ion density perturbations in large-amplitud...
Experimental studies of self-focused, high-current electron-beam propagation phenomena are compared ...