The role of the Wigner function in the dynamics of charged particle beams in high-energy accelerating machines is discussed. This is done within the quantum-like description of the thermal wave model (TWM). A brief review of the numerical experiments showing satisfactory agreement between TWM and the particle tracking simulations is presented. A simple analysis in phase space in terms of the Wigner quasidistribution, showing that TWM is capable of reproducing the beam dynamics in the presence of the space charge effects, is put froward
In this paper, by using an analogy among quantum mechanics, electromagnetic beam optics in optical f...
Within the framework of the thermal wave model (TWM), a quantum-like description of longitudinal coh...
The Wigner-function approach to the quantum theory of electron transport in mesoscopic systems is re...
The role of the Wigner function in the dynamics of charged particle beams in high-energy acceleratin...
A fresh approach for studying the charged particle beam dynamics in terms of Wigner phase‐space dist...
By using a recently proposed thermal wave model for rel-ativistic charged particle beam dynamics, a ...
An overview of electron wave-optics applications to charged-particle-beam transport is presented in ...
Within the thermal wave model framework a comparison is made between the Wigner function, the Husimi...
The classical description of charged-particle beam transport (based on a phase-space equation for el...
A novel tomographic approach to charged-particle beam physics is suggested in the framework of Therm...
Within the framework of the thermal-wave model, the quantumlike description of electron optics in te...
On the basis of the recently proposed thermal wave model (TWM) for particle beams, we give a descrip...
In this paper, by using an analogy among quantum mechanics, electromagnetic beam optics in optical f...
Within the framework of the thermal wave model (TWM), a quantum-like description of longitudinal coh...
The Wigner-function approach to the quantum theory of electron transport in mesoscopic systems is re...
The role of the Wigner function in the dynamics of charged particle beams in high-energy acceleratin...
A fresh approach for studying the charged particle beam dynamics in terms of Wigner phase‐space dist...
By using a recently proposed thermal wave model for rel-ativistic charged particle beam dynamics, a ...
An overview of electron wave-optics applications to charged-particle-beam transport is presented in ...
Within the thermal wave model framework a comparison is made between the Wigner function, the Husimi...
The classical description of charged-particle beam transport (based on a phase-space equation for el...
A novel tomographic approach to charged-particle beam physics is suggested in the framework of Therm...
Within the framework of the thermal-wave model, the quantumlike description of electron optics in te...
On the basis of the recently proposed thermal wave model (TWM) for particle beams, we give a descrip...
In this paper, by using an analogy among quantum mechanics, electromagnetic beam optics in optical f...
Within the framework of the thermal wave model (TWM), a quantum-like description of longitudinal coh...
The Wigner-function approach to the quantum theory of electron transport in mesoscopic systems is re...