<?xml version="1.0" encoding="UTF-8"?>
<paper>
  <abstract>The energy loss and gain of a beam in the nonlinear, &#8216;&#8216;blowout&#8217;&#8217; regime of the plasma wakefield
accelerator, which features ultrahigh accelerating fields, linear transverse focusing forces, and nonlinear
plasma motion, has been asserted, through previous observations in simulations, to scale linearly
with beam charge. Additionally, from a recent analysis by Barov et al., it has been concluded that for an
infinitesimally short beam, the energy loss is indeed predicted to scale linearly with beam charge for
arbitrarily large beam charge. This scaling is predicted to hold despite the onset of a relativistic,
nonlinear response by the plasma, when the number of beam particles occupying a cubic plasma skin
depth exceeds that of plasma electrons within the same volume. This paper is intended to explore the
deviations from linear energy loss using 2D particle-in-cell simulations that arise in the case of
experimentally relevant finite length beams. The peak accelerating field in the plasma wave excited
behind the finite-length beam is also examined, with the artifact of wave spiking adding to the apparent
persistence of linear scaling of the peak field amplitude into the nonlinear regime. At large enough
normalized charge, the linear scaling of both decelerating and accelerating fields collapses, with serious
consequences for plasma wave excitation efficiency. Using the results of parametric particle-in-cell
studies, the implications of these results for observing severe deviations from linear scaling in present
and planned experiments are discussed.</abstract>
  <conference-id type="integer"></conference-id>
  <created-at type="datetime"></created-at>
  <deprecated-conference-name></deprecated-conference-name>
  <file>/home/httpd/docserver/releases/20080613005430/public/paper/file/387/e061302.pdf</file>
  <filename>unavailable</filename>
  <format-id type="integer">24</format-id>
  <id type="integer">387</id>
  <keywords></keywords>
  <note></note>
  <old-format-id>24</old-format-id>
  <place-published></place-published>
  <published-date>2004</published-date>
  <publisher></publisher>
  <refnum type="integer">544</refnum>
  <secondary-title></secondary-title>
  <subject></subject>
  <title>Energy Loss of a High Charge Bunched Electron Beam in Plasma:  Simulations, Scaling, and Accelerating Wakefields</title>
  <updated-at type="datetime">2007-10-19T15:05:05-07:00</updated-at>
  <vol-pages></vol-pages>
  <year-authored>2003</year-authored>
</paper>
