A pulse-periodic gyroresonant plasma accelerator

A plasma electron accelerator based on the gyromagnetic autoresonance effect is described. Elec-trons of the initially cold internal-injection plasma (a classical ECR discharge) are accelerated in the mag-netic field of a magnetic mirror trap under a one-stage effect of the resonant microwave field and an addi-tional pulsed magnetic field. The synchronism in maintaining the resonance conditions is ensured by a smooth increase in the pulsed magnetic field in the course of a microwave pulse. At the moderate values of the input microwave power (up to 2.5 kW) and the steady-state and pulsed magnetic fields (each up to 1 kG), it is possible to obtain stable relativistic plasma bunches, in which the energy of the electron components is a few hundred keV. The measured X-ray bremsstrahlung spectra have features characteristic of the energy dis-tribution of photons, and the high-energy tails are recorded in the region of 600-800 keV. The dependences of the bremsstrahlung characteristics on the experimental conditions-the value of the steady-state magnetic field and the amplitude of the pulsed magnetic field-are investigated. The experimental data are in good agreement in the quantitative sense with the results of the computer simulation and with the earlier studies. © Pleiades Publishing, Ltd., 2012.

Authors
Andreev V.V. 1 , Novitskiy A.A.1 , Umnov A.M. 1 , Chuprov D.V.1
Number of issue
3
Language
English
Pages
301-312
Status
Published
Volume
55
Year
2012
Organizations
  • 1 University of Russia, Department of Experimental Physics, ul. Miklukho-Maklaya 6, Moscow, Russian Federation
Keywords
Autoresonance; Electron component; Experimental data; High energy tails; Microwave power; Microwave pulse; Moderate value; Pulsed magnetic fields; Relativistic plasmas; Resonance condition; Resonant microwave; Computer simulation; Electric discharges; Magnetic mirrors; Plasma accelerators; Magnetic fields
Date of creation
19.10.2018
Date of change
19.10.2018
Short link
https://repository.rudn.ru/en/records/article/record/2315/
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