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DA${\Phi}$NE developments for the KLOE-2 experimental run

Recently the peak luminosity achieved on the DAΦNE collider has been improved by almost a factor three by implementing a novel collision scheme based on large Piwinski angle and Crab-Waist. This encouraging result opened new perspectives for physics research and a new run with the KLOE-2 detector ha...

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Detalles Bibliográficos
Autores principales: Milardi, C., Alesini, D., Biagini, M.E., Biscari, C., Boni, R., Boscolo, M., Bossi, F., Buonomo, B., Clozza, A., Delle Monache, G., Demma, T., Di Pasquale, E., Di Pirro, G., Drago, A., Esposito, M., Gallo, A., Ghigo, A., Guiducci, S., Ligi, C., Marcellini, F., Mazzitelli, G., Pellegrino, L., Preger, M., Quintieri, L., Raimondi, P., Ricci, R., Rotundo, U., Sanelli, C., Serio, M., Sgamma, F., Spataro, B., Stecchi, A., Stella, A., Tomassini, S., Vaccarezza, C., Zobov, M., Levichev, E., Nikitin, S., Piminov, P., Shatilov, D., Bettoni, S.
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1306158
Descripción
Sumario:Recently the peak luminosity achieved on the DAΦNE collider has been improved by almost a factor three by implementing a novel collision scheme based on large Piwinski angle and Crab-Waist. This encouraging result opened new perspectives for physics research and a new run with the KLOE-2 detector has been scheduled to start by spring 2010. The KLOE-2 installation is a complex operation requiring a careful design effort and a several months long shutdown. The high luminosity interaction region has been deeply revised in order to take into account the effect on the beam caused by the solenoidal field of the experimental detector and to ensure background rejection. The shutdown has been also used to implement several other modifications aimed at improving beam dynamics: the wiggler poles have been displaced from the magnet axis in order to cancel high order terms in the field, the feedback systems have been equipped with stronger power supplies and more efficient kickers and electrodes have been inserted inside the wiggler and the dipole vacuum chambers, in the positron ring, to avoid the e-cloud formation. A low level RF feedback has been added to the cavity control in both rings.