Beam measurement systems for the CERN antiproton decelerator (AD)
The new, low-energy antiproton physics facility at CERN has been successfully commissioned and has been delivering decelerated antiprotons at 100 MeV/c since July 2000. The AD consists of one ring where the 3.5 GeV/c antiprotons produced from a production target are injected, rf manipulated, stochas...
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creator | Chohan, V. Angoletta, M. Ludwig, M. Marqversen, O. Odier, P. Pedersen, F. Transquille, G. Raich, U. Soby, L. Spickermann, T. |
description | The new, low-energy antiproton physics facility at CERN has been successfully commissioned and has been delivering decelerated antiprotons at 100 MeV/c since July 2000. The AD consists of one ring where the 3.5 GeV/c antiprotons produced from a production target are injected, rf manipulated, stochastically cooled, decelerated (with further stages involving additional stochastic and electron cooling and rf manipulation) and extracted at 100 MeV/c. While proton test beams of sufficient intensity could be used for certain procedures in AD commissioning, this was not possible for setting-up and routine operation. Hence, special diagnostics systems had to be developed to obtain the beam and accelerator characteristics using the weak antiproton beams of a few 10/sup 7/ particles at all momenta from 3.5 GeV/c down to 100 MeV/c. These include systems for position measurement, intensity, beam size measurements using transverse aperture limiters and scintillators and Schottky-based tools. This paper gives an overall view of these systems and their usage. |
doi_str_mv | 10.1109/PAC.2001.987359 |
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Proceedings of the 2001 Particle Accelerator Conference (Cat. No.01CH37268)</btitle><stitle>PAC</stitle><date>2001</date><risdate>2001</risdate><volume>3</volume><spage>2302</spage><epage>2304 vol.3</epage><pages>2302-2304 vol.3</pages><isbn>9780780371910</isbn><isbn>0780371917</isbn><abstract>The new, low-energy antiproton physics facility at CERN has been successfully commissioned and has been delivering decelerated antiprotons at 100 MeV/c since July 2000. The AD consists of one ring where the 3.5 GeV/c antiprotons produced from a production target are injected, rf manipulated, stochastically cooled, decelerated (with further stages involving additional stochastic and electron cooling and rf manipulation) and extracted at 100 MeV/c. While proton test beams of sufficient intensity could be used for certain procedures in AD commissioning, this was not possible for setting-up and routine operation. Hence, special diagnostics systems had to be developed to obtain the beam and accelerator characteristics using the weak antiproton beams of a few 10/sup 7/ particles at all momenta from 3.5 GeV/c down to 100 MeV/c. These include systems for position measurement, intensity, beam size measurements using transverse aperture limiters and scintillators and Schottky-based tools. This paper gives an overall view of these systems and their usage.</abstract><pub>IEEE</pub><doi>10.1109/PAC.2001.987359</doi><oa>free_for_read</oa></addata></record> |
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subjects | Cooling Electrons Particle accelerators Particle beams Physics Position measurement Production Proton accelerators Stochastic processes Testing |
title | Beam measurement systems for the CERN antiproton decelerator (AD) |
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