• DocumentCode
    1402125
  • Title

    Analysis of electron trajectories in a gyrotron resonator

  • Author

    Dumbrajs, Olgierd ; Meyer-Spasche, Rita ; Reinfelds, Andrejs

  • Author_Institution
    Max-Planck Inst. fur Plasmasphysik, Garching, Germany
  • Volume
    26
  • Issue
    3
  • fYear
    1998
  • fDate
    6/1/1998 12:00:00 AM
  • Firstpage
    846
  • Lastpage
    853
  • Abstract
    A detailed mathematical analysis of the equation describing the electron interaction with the high-frequency field in a gyrotron resonator is presented. Electron trajectories in the phase space are classified. It is proven that in the cold-cavity approximation when the high-frequency field is represented by a Gaussian-type function, the solutions of the gyrotron equation are asymptotically equal to the solutions of the corresponding unforced equation. This means that chaos, which, in principle, can develop in a resonator for some values of control parameters, can be only transient, i.e., electrons again follow regular trajectories once they leave the interaction space. Understanding of the distribution of electron trajectories is important, both from the theoretical and the practical point of view. As an example, detailed numerical computations of electron trajectories are performed for those values of control parameters which correspond to the maximum efficiency
  • Keywords
    cavity resonators; chaos; cyclotron radiation; gyrotrons; mathematical analysis; millimetre wave generation; millimetre wave tubes; 20 to 200 GHz; Gaussian-type function; chaos; cold-cavity approximation; control parameters; electron interaction; electron trajectories; gyrotron equation; gyrotron resonator; high-frequency field; interaction space; maximum efficiency; numerical computations; phase space; regular trajectories; resonator; transient chaos; unforced equation; Chaos; Charge carrier processes; Cyclotrons; Electromagnetic heating; Electrons; Equations; Frequency; Gyrotrons; Mathematical analysis; Plasma chemistry;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/27.700850
  • Filename
    700850