The effect of the dissociator cooling temperature has been tested in order to explain the unexpected RHIC atomic beam intensity. Studies on trumpet nozzle geometry, compared to standard sonic nozzle have been performed, both with simulation methods and test bench measurements on molecular beams, obtaining promising results.

SYSTEMATIC STUDIES FOR THE DEVELOPMENT OF HIGH-INTENSITY ABS

BARION, Luca;CIULLO, Giuseppe;CONTALBRIGO, Marco;FERRETTI, Paola;LENISA, Paolo;STATERA, Marco
2011

Abstract

The effect of the dissociator cooling temperature has been tested in order to explain the unexpected RHIC atomic beam intensity. Studies on trumpet nozzle geometry, compared to standard sonic nozzle have been performed, both with simulation methods and test bench measurements on molecular beams, obtaining promising results.
2011
9789814324915
9814324914
Atomic beam source; ABS intensity; PAX; polarized antiprotons; nozzle trumpet and sonic
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11392/1684521
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