High luminosity /spl beta/=0.5 m RHIC insertions
An increase in RHIC collision luminosity is possible by reducing the beam size at the interaction point (IP). We present a method for reducing the IP beta function, /spl beta/*, from the design minimum of 1 m to 0.5 m. We demonstrate that this /spl beta/*=0.5 m configuration is achievable with exist...
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creator | Tepikian, S. Huang, H. MacKay, W. Pilat, F. Ptitsyn, V. Satogata, T. Trbojevic, D. van Zeijts, J. |
description | An increase in RHIC collision luminosity is possible by reducing the beam size at the interaction point (IP). We present a method for reducing the IP beta function, /spl beta/*, from the design minimum of 1 m to 0.5 m. We demonstrate that this /spl beta/*=0.5 m configuration is achievable with existing RHIC power supplies for 100 GeV protons. We discuss the correction of the higher order IR multi-poles and the second order chromaticity. |
doi_str_mv | 10.1109/PAC.2003.1288645 |
format | Conference Proceeding |
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We present a method for reducing the IP beta function, /spl beta/*, from the design minimum of 1 m to 0.5 m. We demonstrate that this /spl beta/*=0.5 m configuration is achievable with existing RHIC power supplies for 100 GeV protons. We discuss the correction of the higher order IR multi-poles and the second order chromaticity.</abstract><pub>IEEE</pub><doi>10.1109/PAC.2003.1288645</doi></addata></record> |
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source | IEEE Electronic Library (IEL) Conference Proceedings |
subjects | Current supplies Lattices Linear particle accelerator Polynomials Power measurement Power supplies Protons Smoothing methods Telescopes Transfer functions |
title | High luminosity /spl beta/=0.5 m RHIC insertions |
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