Physical Review Special Topics. Accelerators and Beams (Feb 2011)

Dynamics of charged particles in an adiabatic thermal beam equilibrium

  • Haofei Wei,
  • Chiping Chen

DOI
https://doi.org/10.1103/PhysRevSTAB.14.024201
Journal volume & issue
Vol. 14, no. 2
p. 024201

Abstract

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Charged-particle motion is studied in the self-electric and self-magnetic fields of a well-matched, intense charged-particle beam and an applied periodic solenoidal magnetic focusing field. The beam is assumed to be in a state of adiabatic thermal equilibrium. The phase space is analyzed and compared with that of the well-known Kapchinskij-Vladimirskij (KV)-type beam equilibrium. It is found that the widths of nonlinear resonances in the adiabatic thermal beam equilibrium are narrower than those in the KV-type beam equilibrium. Numerical evidence is presented, indicating almost complete elimination of chaotic particle motion in the adiabatic thermal beam equilibrium.