dc.contributor.author |
Avramides, K |
en |
dc.contributor.author |
Vomvoridis, J |
en |
dc.contributor.author |
Kern, S |
en |
dc.contributor.author |
Pagonakis, I |
en |
dc.date.accessioned |
2014-03-01T02:51:19Z |
|
dc.date.available |
2014-03-01T02:51:19Z |
|
dc.date.issued |
2008 |
en |
dc.identifier.uri |
https://dspace.lib.ntua.gr/xmlui/handle/123456789/35481 |
|
dc.subject |
Computer Simulation |
en |
dc.subject |
Electromagnetic Waves |
en |
dc.subject |
Interactive Simulation |
en |
dc.subject |
Magnetic Field |
en |
dc.subject |
Transit Time |
en |
dc.subject |
Current Drive |
en |
dc.subject |
Electron Beam |
en |
dc.subject |
Electron Cyclotron Resonance |
en |
dc.subject |
Interaction Region |
en |
dc.title |
Electron-beam modeling in gyrotron interaction simulations |
en |
heal.type |
conferenceItem |
en |
heal.identifier.primary |
10.1109/PLASMA.2008.4590839 |
en |
heal.identifier.secondary |
http://dx.doi.org/10.1109/PLASMA.2008.4590839 |
en |
heal.publicationDate |
2008 |
en |
heal.abstract |
Gyrotrons are the leading microwave sources for plasma heating and current drive in magnetic confinement fusion experiments. In a gyrotron, a helical electron beam, guided by an external magnetic field, delivers energy to a RF electromagnetic wave (i.e. a TE mode supported by the interaction cavity) through electron cyclotron resonance. Computer simulations of the beam-field interaction in gyrotrons play a |
en |
heal.journalName |
IEEE International Conference on Plasma Science |
en |
dc.identifier.doi |
10.1109/PLASMA.2008.4590839 |
en |