Finding self-consistent distributions of beam particles interacting with each other via the space charge force is one of the challenges of accelerator physics. Exactly solvable models are used for simulation benchmarks, instability threshold calculations, etc. Since such distributions have been found only in one and two dimensions (Kapchinsky-Vladimirsky distribution), it is not possible to apply them to a general three dimensional motion. This paper shows how to construct new sets of self-consistent distributions, extending even to the three dimensional case
A method for calculating 3-D space-charge forces has been developed that is suitable for bunched bea...
Abstract. Derived from the Vlasov equation the Ensemble Model [1] has been elaborated for fast and e...
A self-consistent phase space distribution is a charged particle beam in which the electric field ha...
The problem of stationary self-consistent distributions for charged particles beam in longitudinal m...
We describe the transverse beam distribution in particle accelerators within the controlled, stochas...
In tracking, the transverse space-charge force can be represented by changes in the horizontal and v...
We describe the transverse beam distribution in particle accelerators within the controlled, stochas...
An algorithm has been developed to compute particle tracking, including self-consistent space charge...
One major concern in the design and operation of high-intensity rings is beam loss due to beam halo....
Many applications of particle acceleration, such as heavy ion fusion, require longitudinal bunching ...
This paper is based on recently found sets of self-consistent 2D and 3D time-dependent space charge ...
Self-consistent Vlasov-Poisson simulations of beams with high space-charge intensity often require s...
Self-consistent Vlasov-Poisson simulations of beams with high space-charge intensity often require s...
This paper is based on recently found sets of self-consistent 2D and 3D time-dependent space charge ...
The self-consistent beam-beam problem is formulated for the transverse distribution functions that m...
A method for calculating 3-D space-charge forces has been developed that is suitable for bunched bea...
Abstract. Derived from the Vlasov equation the Ensemble Model [1] has been elaborated for fast and e...
A self-consistent phase space distribution is a charged particle beam in which the electric field ha...
The problem of stationary self-consistent distributions for charged particles beam in longitudinal m...
We describe the transverse beam distribution in particle accelerators within the controlled, stochas...
In tracking, the transverse space-charge force can be represented by changes in the horizontal and v...
We describe the transverse beam distribution in particle accelerators within the controlled, stochas...
An algorithm has been developed to compute particle tracking, including self-consistent space charge...
One major concern in the design and operation of high-intensity rings is beam loss due to beam halo....
Many applications of particle acceleration, such as heavy ion fusion, require longitudinal bunching ...
This paper is based on recently found sets of self-consistent 2D and 3D time-dependent space charge ...
Self-consistent Vlasov-Poisson simulations of beams with high space-charge intensity often require s...
Self-consistent Vlasov-Poisson simulations of beams with high space-charge intensity often require s...
This paper is based on recently found sets of self-consistent 2D and 3D time-dependent space charge ...
The self-consistent beam-beam problem is formulated for the transverse distribution functions that m...
A method for calculating 3-D space-charge forces has been developed that is suitable for bunched bea...
Abstract. Derived from the Vlasov equation the Ensemble Model [1] has been elaborated for fast and e...
A self-consistent phase space distribution is a charged particle beam in which the electric field ha...