In this paper, by using an analogy among quantum mechanics, electromagnetic beam optics in optical fibers, and charge particle beam dynamics, we introduce the concept of coherent states for charged particle beams in the framework of the Thermal Wave Model (TWM). We give a physical meaning of the Gaussian-like coherent structures of charged particle distribution that are both naturally and artificially produced in an accelerating machine in terms of the concept of coherent states widely used in quantum mechanics and in quantum optics. According to TWM, this can be done by using a Schrodinger-like equation for a complex function, the so-called beam wave function (BWF), whose squared modulus is proportional to the transverse beam density profi...
The radiation of photons by electrons is investigated in the framework of quantum electrodynamics up...
The classical description of charged-particle beam transport (based on a phase-space equation for el...
Within the framework of the thermal-wave model, the quantumlike description of electron optics in te...
In this paper, by using an analogy among quantum mechanics, electromagnetic beam optics in optical f...
An overview of electron wave-optics applications to charged-particle-beam transport is presented in ...
The standard classical description of non-laminar charged particle beams in paraxial approximation i...
A fresh approach for studying the charged particle beam dynamics in terms of Wigner phase‐space dist...
We show that the well-known analogy between electromagnetic beam optics (EBO) and relativistic-charg...
We review some results on longitudinal beam dynamics obtained in the framework of the Thermal Wave M...
Within the framework of the thermal wave model (TWM), a quantum-like description of longitudinal coh...
Charged particle beam transport has been recently described in terms of a quantum-like model, called...
By using a recently proposed thermal wave model for rel-ativistic charged particle beam dynamics, a ...
Within the thermal wave model framework a comparison is made between the Wigner function, the Husimi...
A theoretical investigation of the propagation of a relativistic electron (or positron) particle bea...
The radiation of photons by electrons is investigated in the framework of quantum electrodynamics up...
The classical description of charged-particle beam transport (based on a phase-space equation for el...
Within the framework of the thermal-wave model, the quantumlike description of electron optics in te...
In this paper, by using an analogy among quantum mechanics, electromagnetic beam optics in optical f...
An overview of electron wave-optics applications to charged-particle-beam transport is presented in ...
The standard classical description of non-laminar charged particle beams in paraxial approximation i...
A fresh approach for studying the charged particle beam dynamics in terms of Wigner phase‐space dist...
We show that the well-known analogy between electromagnetic beam optics (EBO) and relativistic-charg...
We review some results on longitudinal beam dynamics obtained in the framework of the Thermal Wave M...
Within the framework of the thermal wave model (TWM), a quantum-like description of longitudinal coh...
Charged particle beam transport has been recently described in terms of a quantum-like model, called...
By using a recently proposed thermal wave model for rel-ativistic charged particle beam dynamics, a ...
Within the thermal wave model framework a comparison is made between the Wigner function, the Husimi...
A theoretical investigation of the propagation of a relativistic electron (or positron) particle bea...
The radiation of photons by electrons is investigated in the framework of quantum electrodynamics up...
The classical description of charged-particle beam transport (based on a phase-space equation for el...
Within the framework of the thermal-wave model, the quantumlike description of electron optics in te...