Upper-hybrid oscillations of high current relativistic electron beam under conditions of magnetic self-insulation

Author:

Ilyenko K.1ORCID,Yatsenko T.2ORCID,Vekslerchik V.1ORCID,Opanasenko A.3ORCID,Portillo S.4ORCID

Affiliation:

1. IRE NAS of Ukraine 1 , Kharkiv 61085, Ukraine

2. General Mills 2 , Minneapolis, Minnesota 55426, USA

3. NSC KIPT NAS of Ukraine 3 , Kharkiv 61108, Ukraine

4. University of New Mexico 4 , Albuquerque, New Mexico 87131, USA

Abstract

Upper-hybrid oscillations have appeared in a number of theoretical and experimental investigations of quasi-static neutral plasmas immersed in an external strong magnetic field. We theoretically demonstrate the existence of upper-hybrid oscillations (UHOs) on high current relativistic electron beam (non-neutral plasma) of Magnetically (self-)Insulated transmission Line Oscillator (MILO), which is a promising source of gigahertz-frequency, high power microwave radiation under development in a number of research laboratories. We study the non-linear autonomous system of equations governing MILO high current beam dynamics, build a first integral, which is the total relativistic energy of the non-linear perturbations of charged-particle beam in motion, and derive an explicit solution for this system in terms of elliptic integrals and Jacobi elliptic functions. The period of non-linear UHOs in a non-equilibrium relativistic plasma is derived in a closed analytical form.

Funder

North Atlantic Treaty Organization

Office of Naval Research

Publisher

AIP Publishing

Reference28 articles.

1. Improved cathode design for long-pulse MILO;IEEE Trans. Plasma Sci.,2001

2. E-beam interaction with plasmas in a coaxial irised slow-wave transmission line;Electromag. Phenom.,2001

3. Investigation of an S-band tapered magnetically insulated transmission line oscillator;Chin. Phys. Lett.,2009

4. Advances and present trends in magnetically insulated line oscillator;J. Electromag. Waves Appl.,2017

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