A sharp transition to a space-charge dominated regime is induced in a low-energy electron beam produced in a Malmberg–Penning trap by increasing the emission current of the source. The transition is characterized by the appearance of a region, around the axis of the beam, not accessible to beam electrons, and by the fast development of coherent structures in the remaining electron plasma, due to the sharp increase of local vorticity. The results are interpreted in the framework of a cold fluid drift–Poisson model, and using a three-dimensional particle-in-cell simulation code.

Experimental investigation of coherent structures in a low-energy electron beam / G. Bettega, F. Cavaliere, A. Illiberi, R. Pozzoli, M. Romé, M. Cavenago, Yu. Tsidulko. - In: APPLIED PHYSICS LETTERS. - ISSN 0003-6951. - 84:19(2004), pp. 3807-3809.

Experimental investigation of coherent structures in a low-energy electron beam

G. Bettega
Primo
;
F. Cavaliere
Secondo
;
A. Illiberi;R. Pozzoli;M. Romé;
2004

Abstract

A sharp transition to a space-charge dominated regime is induced in a low-energy electron beam produced in a Malmberg–Penning trap by increasing the emission current of the source. The transition is characterized by the appearance of a region, around the axis of the beam, not accessible to beam electrons, and by the fast development of coherent structures in the remaining electron plasma, due to the sharp increase of local vorticity. The results are interpreted in the framework of a cold fluid drift–Poisson model, and using a three-dimensional particle-in-cell simulation code.
Settore FIS/03 - Fisica della Materia
2004
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/144042
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