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Effect of the Periodic Ion Density Channel on the Behavior of the Ion Hose Instability of a Relativistic Electron Beam. / Zelensky, A. G.; Kolesnikov, E. K.

In: Technical Physics, Vol. 48, No. 12, 01.12.2003, p. 1570-1574.

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@article{ce988988dd904fa9bafef56d8f9eaf40,
title = "Effect of the Periodic Ion Density Channel on the Behavior of the Ion Hose Instability of a Relativistic Electron Beam",
abstract = "The dynamics of a relativistic electron beam propagating in an ion channel with a periodically varying density is considered. The behavior of the ion hose instability at different parameters of the beam-ion channel system is studied using the spread mass model. Conditions are determined under which the ion hose instability does not hinder the beam propagation over distances on the order of 100 betatron lengths of the beam.",
author = "Zelensky, {A. G.} and Kolesnikov, {E. K.}",
year = "2003",
month = dec,
day = "1",
doi = "10.1134/1.1634678",
language = "English",
volume = "48",
pages = "1570--1574",
journal = "Technical Physics",
issn = "1063-7842",
publisher = "Pleiades Publishing",
number = "12",

}

RIS

TY - JOUR

T1 - Effect of the Periodic Ion Density Channel on the Behavior of the Ion Hose Instability of a Relativistic Electron Beam

AU - Zelensky, A. G.

AU - Kolesnikov, E. K.

PY - 2003/12/1

Y1 - 2003/12/1

N2 - The dynamics of a relativistic electron beam propagating in an ion channel with a periodically varying density is considered. The behavior of the ion hose instability at different parameters of the beam-ion channel system is studied using the spread mass model. Conditions are determined under which the ion hose instability does not hinder the beam propagation over distances on the order of 100 betatron lengths of the beam.

AB - The dynamics of a relativistic electron beam propagating in an ion channel with a periodically varying density is considered. The behavior of the ion hose instability at different parameters of the beam-ion channel system is studied using the spread mass model. Conditions are determined under which the ion hose instability does not hinder the beam propagation over distances on the order of 100 betatron lengths of the beam.

UR - http://www.scopus.com/inward/record.url?scp=0348199130&partnerID=8YFLogxK

U2 - 10.1134/1.1634678

DO - 10.1134/1.1634678

M3 - Article

AN - SCOPUS:0348199130

VL - 48

SP - 1570

EP - 1574

JO - Technical Physics

JF - Technical Physics

SN - 1063-7842

IS - 12

ER -

ID: 39382829