A multiphysics-based modeling design of a low energy electron source using a thermionic cathode is described in this paper. The proposed device produces a narrow beam employable in delicate applications where dimensions are critical. The effects of multiple physics influencing factors due to the cathode heating over the beam dynamics have been predicted through a multiphysics design approach. This paper would provide the needed knowledge for virtual prototyping of such devices. For this aim, several strategies have been adopted to obtain a simple model, which shows clearly the investigated mechanisms. According to this study, the appropriate materials and shapes can be chosen
Advances in electron sources technology potentially have a profound impact on a whole range of appli...
The design of a low temperature electron beam cooling system for the Indiana University electron-coo...
We propose a novel gridless continuous-wave radiofrequency (rf) thermionic gun capable of generating...
A multiphysics-based modeling design of a low energy electron source using a thermionic cathode is ...
This paper describes a particular design of a thermionic electron gun employable in Sub-millimetric ...
In this thesis, a thermionic electron gun generating low emittance and the high power electron beam ...
This report is a brief description of a model electron beam, which is meant to serve as a pulsed hea...
This paper presents the design of an electron gun that could be employed for vacuum tubes operating ...
For the Compact Linear Collider project at CERN, the power for the main linacs is extracted from a d...
Electron beam technology has a long history with wide range of applications in research and industri...
A design of an electron gun system is presented whose stray light emission is reduced by about three...
482-485A tetrode type electron gun system for the generation of low energy electrons has been desi...
This thesis was submitted for the award of Doctor of Philosophy and was awarded by Brunel University...
This paper presents the design of an electron gun employable in THz vacuum tubes. A Multiphysics (...
In part I of this thesis the theory underlying electron beam design is presented. The paraxial ray ...
Advances in electron sources technology potentially have a profound impact on a whole range of appli...
The design of a low temperature electron beam cooling system for the Indiana University electron-coo...
We propose a novel gridless continuous-wave radiofrequency (rf) thermionic gun capable of generating...
A multiphysics-based modeling design of a low energy electron source using a thermionic cathode is ...
This paper describes a particular design of a thermionic electron gun employable in Sub-millimetric ...
In this thesis, a thermionic electron gun generating low emittance and the high power electron beam ...
This report is a brief description of a model electron beam, which is meant to serve as a pulsed hea...
This paper presents the design of an electron gun that could be employed for vacuum tubes operating ...
For the Compact Linear Collider project at CERN, the power for the main linacs is extracted from a d...
Electron beam technology has a long history with wide range of applications in research and industri...
A design of an electron gun system is presented whose stray light emission is reduced by about three...
482-485A tetrode type electron gun system for the generation of low energy electrons has been desi...
This thesis was submitted for the award of Doctor of Philosophy and was awarded by Brunel University...
This paper presents the design of an electron gun employable in THz vacuum tubes. A Multiphysics (...
In part I of this thesis the theory underlying electron beam design is presented. The paraxial ray ...
Advances in electron sources technology potentially have a profound impact on a whole range of appli...
The design of a low temperature electron beam cooling system for the Indiana University electron-coo...
We propose a novel gridless continuous-wave radiofrequency (rf) thermionic gun capable of generating...