Halo Formation And Emittance Growth of Positron Beams in Plasmas

An ultrarelativistic 28.5 GeV, 700-{micro}m-long positron bunch is focused near the entrance of a 1.4-m-long plasma with a density n{sub e} between {approx}10{sup 13} and {approx}5 x 10{sup 14} cm{sup -3}. Partial neutralization of the bunch space charge by the mobile plasma electrons results in a r...

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Veröffentlicht in:Physical review letters 2011-10, Vol.101 (5)
Hauptverfasser: Muggli, P., /Southern California U., Blue, B.E., Clayton, C.E., /UCLA, Decker, F.J., Hogan, M.J., /SLAC, Huang, C., Joshi, C., Katsouleas, Thomas C., Lu, W., Mori, W.B., O'Connell, C.L., Siemann, R.H., Walz, D., Zhou, M.
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Sprache:eng
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Zusammenfassung:An ultrarelativistic 28.5 GeV, 700-{micro}m-long positron bunch is focused near the entrance of a 1.4-m-long plasma with a density n{sub e} between {approx}10{sup 13} and {approx}5 x 10{sup 14} cm{sup -3}. Partial neutralization of the bunch space charge by the mobile plasma electrons results in a reduction in transverse size by a factor of {approx}3 in the high emittance plane of the beam {approx}1 m downstream from the plasma exit. As n{sub e} increases, the formation of a beam halo containing {approx}40% of the total charge is observed, indicating that the plasma focusing force is nonlinear. Numerical simulations confirm these observations. The bunch with an incoming transverse size ratio of {approx}3 and emittance ratio of {approx}5 suffers emittance growth and exits the plasma with approximately equal sizes and emittances.
ISSN:0031-9007
1079-7114