Phys. Rev. ST Accel. Beams 10, 114401 (2007) [5 pages]Maps for electron cloud density in Large Hadron Collider dipoles |
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T. Demma
Istituto Nazionale di Fisica Nucleare (INFN), Laboratori Nazionali di Frascati, Via E. Fermi 40, I-00044 Frascati (Rome), Italy
S. Petracca
Department of Engineering, University of Sannio at Benevento, C.so Garibaldi 107, I-80125 Benevento, Italy
F. Ruggiero *, G. Rumolo, and F. Zimmermann
European Organization for Nuclear Research (CERN), CH-1211 Genève 23, Switzerland
Received 10 March 2007; published 26 November 2007
The generation of a quasistationary electron cloud inside the beam pipe through beam-induced multipacting processes has become an area of intensive study. The analyses performed so far have been based on heavy computer simulations taking into account photoelectron production, secondary emission, electron dynamics, and space charge effects, providing a detailed description of the electron-cloud evolution. Iriso and Peggs [U. Iriso and S. Peggs, Phys. Rev. ST Accel. Beams 8, 024403 (2005)] have shown that, for the typical parameters of RHIC, the bunch-to-bunch evolution of the average electron-cloud density at a point can be represented by a cubic map. Simulations based on this map formalism are orders of magnitude faster compared to those based on standard particle tracking codes. In this communication we show that the map formalism is also applicable to the case of the Large Hadron Collider (LHC), and that, in particular, it reproduces the average electron-cloud densities computed using a reference code to within ∼15% for general LHC bunch filling patterns. We also illustrate the dependence of the polynomial map coefficients on the physical parameters affecting the electron cloud (secondary emission yield, bunch charge, bunch spacing, etc.).
©2007 The American Physical Society
URL: http://link.aps.org/abstract/PRSTAB/v10/e114401
DOI: 10.1103/PhysRevSTAB.10.114401
PACS: 29.20.Dh, 29.27.−a
* Deceased.
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