Published July 2, 2012 | Version v1
Report

Upgrade of the Drive LINAC for the AWA Facility Dielectric Two-Beam Accelerator

  • 1. Argonne National Laboratory, Argonne, IL (United States)
  • 2. SLAC National Accelerator Laboratory, Menlo Park, CA (United States)
  • 3. Northern Illinois University, Dekalb, IL (United States)

Description

We report on the design of a seven-cell, standing-wave, 1.3-GHz rf cavity and the associated beam dynamics studies for the upgrade of the drive beamline LINAC at the Argonne Wakefield Accelerator (AWA) facility. The LINAC design is a compromise between single-bunch operation (100 nC (at) 75 MeV) and minimization of the energy droop along the bunch train during bunch-train operation. The 1.3-GHz drive bunch-train target parameters are 75 MeV, 10-20-ns macropulse duration, and 16 x 60 nC microbunches; this is equivalent to a macropulse current and beam power of 80 A and 6 GW, respectively. Each LINAC structure accelerates approximately 1000 nC in 10 ns by a voltage of 11 MV at an rf power of 10 MW. Due to the short bunch-train duration desired (∼10 ns) and the existing frequency (1.3 GHz), compensation of the energy droop along the bunch train is difficult to accomplish by means of the two standard techniques: time-domain or frequency-domain beam loading compensation. Therefore, to minimize the energy droop, our design is based on a large stored energy rf cavity. In this paper, we present our rf cavity optimization method, detailed rf cavity design, and beam dynamics studies of the drive beamline.

Availability note (English)

Available from http://www.slac.stanford.edu/cgi-wrap/getdoc/slac-pub-15138.pdf; http://www.slac.stanford.edu/cgi-wrap/pubpage?slac-pub-15138.html; PURL: https://www.osti.gov/servlets/purl/1045203/

Additional details

Publishing Information

Imprint Pagination
3 p.
Report number
SLAC-PUB--15138

Conference

Title
International Particle Accelerator Conference
Acronym
IPAC 2010
Dates
23-28 May 2010
Place
Kyoto (Japan)

INIS

Optional Information

Contract/Grant/Project number
AC02-76SF00515
Notes
Conf.Proc.C100523:THPD016,2010
Funding organization
US DOE Office of Science (United States)