DocumentCode
1423455
Title
Nonlinear Eulerian hydrodynamical analysis of helix traveling-wave tubes
Author
Datta, S.K. ; Jain, P.K. ; Narayan, M. D Raj ; Basu, B.N.
Author_Institution
Microwave Tube Res. & Dev. Centre, Bangalore, India
Volume
45
Issue
9
fYear
1998
fDate
9/1/1998 12:00:00 AM
Firstpage
2055
Lastpage
2062
Abstract
Nonlinear Eulerian hydrodynamical equations of a helix traveling-wave tube (TWT) were formulated and their solutions obtained by the method of successive approximation. The present Eulerian approach, unlike the Lagrangian one, does not give a picture of electron overtaking and that of the position of electron bunch relative to the RF phase-nor does it account for saturation effects caused by the defocusing of the RF wave from the electron bunch. Nevertheless, Eulerian approach was found to be less encumbered, and took less computer time than Lagrangian approach as the former avoided a large-scale numerical integration and gave closed-form solutions. Interestingly, it also demonstrated saturation effects when the third-order nonlinearity was included in the analysis. In order to explore the validity of the present Eulerian approach to the problem of nonlinear TWTs, it was compared with more accurate Lagrangian approach. Hence, the range of validity of the present nonlinear Eulerian approach was found with respect to the interaction length of the device and the input RF power drive vis-a-vis the saturation behavior of the device. It is hoped that, in the regime of validity thus found, one can use the present Eulerian approach for the study of nonlinear effects like harmonic generation in TWTs, to be taken up in a subsequent paper
Keywords
hydrodynamics; travelling wave tubes; Eulerian hydrodynamics; helix traveling wave tube; nonlinear analysis; Closed-form solution; Electron beams; Electron tubes; Frequency conversion; Hydrodynamics; Lagrangian functions; Large scale integration; Nonlinear equations; Radio frequency; Research and development;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/16.711374
Filename
711374
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