The interaction of waveguide modes and consequences on laser operation are studied numerically in a THz free electron laser (FEL) driven by short electron bunches. The considered FEL cavity configuration is represented by a parallel-plate waveguide extending over the complete distance between cylindrical cavity mirrors with energy out-coupling through a rectangular slit in one of the mirrors. We describe the multimode FEL cavity desynchronization dynamics and predict strong enhancement in FEL power at special cavity configurations, when modes are degenerate. Furthermore, we predict that simultaneous excitation of several waveguide modes can occur but do not negatively influence the lasing process
We report new theoretical and numerical results in the following areas of FEL physics : A) Long puls...
The THz frequency regime holds the possibility of a new frontier in advanced accelerator research. I...
We analyze an optical phenomenon taking place in waveguide free-electron lasers, which disturbs, or ...
The interaction of waveguide modes and consequences on laser operation are studied numerically in a ...
Contains fulltext : 135552.pdf (publisher's version ) (Open Access
In this paper we present results of numerical studies on the cavity desynchronization in the short-p...
In a so-called waveguide free electron laser (FEL) for THz radiations, an extremely small aperture (...
An analysis of excitation, gain-coupling and evolution of transverse electromagnetic modes in a wave...
A three-dimensional, space-frequency model for simulation of interaction in free-electron lasers (FE...
The radial structure of intra-cavity light pulses is considered in the hole-coupled free-electron la...
In a free electron laser (FEL) oscillator, the optical pulse evolves through mode competition as a ...
Conventional free electron laser (FEL) oscillators minimize the optical mode volume around the elect...
Consideration is made of a free-electron laser with many optical cavities where the cavities communi...
The stimulated refraction effect (optical guiding) in a free-electron laser (FEL) is studied theoret...
A grating-waveguide free-electron laser is driven by an axial electron beam that propagates between ...
We report new theoretical and numerical results in the following areas of FEL physics : A) Long puls...
The THz frequency regime holds the possibility of a new frontier in advanced accelerator research. I...
We analyze an optical phenomenon taking place in waveguide free-electron lasers, which disturbs, or ...
The interaction of waveguide modes and consequences on laser operation are studied numerically in a ...
Contains fulltext : 135552.pdf (publisher's version ) (Open Access
In this paper we present results of numerical studies on the cavity desynchronization in the short-p...
In a so-called waveguide free electron laser (FEL) for THz radiations, an extremely small aperture (...
An analysis of excitation, gain-coupling and evolution of transverse electromagnetic modes in a wave...
A three-dimensional, space-frequency model for simulation of interaction in free-electron lasers (FE...
The radial structure of intra-cavity light pulses is considered in the hole-coupled free-electron la...
In a free electron laser (FEL) oscillator, the optical pulse evolves through mode competition as a ...
Conventional free electron laser (FEL) oscillators minimize the optical mode volume around the elect...
Consideration is made of a free-electron laser with many optical cavities where the cavities communi...
The stimulated refraction effect (optical guiding) in a free-electron laser (FEL) is studied theoret...
A grating-waveguide free-electron laser is driven by an axial electron beam that propagates between ...
We report new theoretical and numerical results in the following areas of FEL physics : A) Long puls...
The THz frequency regime holds the possibility of a new frontier in advanced accelerator research. I...
We analyze an optical phenomenon taking place in waveguide free-electron lasers, which disturbs, or ...