THE FINAL COLLIMATION SYSTEM FOR THE LHC

THE FINAL COLLIMATION SYSTEM FOR THE LHC
复制标题

DOI:
--
复制
发表时间:
2006-07
期刊:
--
影响因子:
--
通讯作者:
R. Assmann;M. Sobczak;F. Ruggiero;M. Magistris;T. Weiler;J. Lettry;M. Santana;A. Masi;V. Vlachoudis;J. Lendaro;G. Bellodi;M. Jonker;C. Rathjen;C. Bracco;S. Redaelli;G. Robert-Demolaize;M. Brugger;K. Tsoulou;O. Aberle;R. Losito;R. Perret;A. Bertarelli;M. Mayer;P. Sievers;P. Gander;S. Chamizo;K. Kershaw;E. Métral;J. Jeanneret;J. Jiménez;I. Kurochkin;A. Dallocchio;S. Roesler;Y. Kadi;I. Baishev;S. Calatroni;B. Dehning;H. Braun;A. Ferrari;E. Holzer;A. Grudiev
R. Assmann;M. Sobczak;F. Ruggiero;M. Magistris;T. Weiler;J. Lettry;M. Santana;A. Masi;V. Vlachoudis;J. Lendaro;G. Bellodi;M. Jonker;C. Rathjen;C. Bracco;S. Redaelli;G. Robert-Demolaize;M. Brugger;K. Tsoulou;O. Aberle;R. Losito;R. Perret;A. Bertarelli;M. Mayer;P. Sievers;P. Gander;S. Chamizo;K. Kershaw;E. Métral;J. Jeanneret;J. Jiménez;I. Kurochkin;A. Dallocchio;S. Roesler;Y. Kadi;I. Baishev;S. Calatroni;B. Dehning;H. Braun;A. Ferrari;E. Holzer;A. Grudiev
中科院分区:
其他
文献类型:
--
作者:
R. Assmann;M. Sobczak;F. Ruggiero;M. Magistris;T. Weiler;J. Lettry;M. Santana;A. Masi;V. Vlachoudis;J. Lendaro;G. Bellodi;M. Jonker;C. Rathjen;C. Bracco;S. Redaelli;G. Robert-Demolaize;M. Brugger;K. Tsoulou;O. Aberle;R. Losito;R. Perret;A. Bertarelli;M. Mayer;P. Sievers;P. Gander;S. Chamizo;K. Kershaw;E. Métral;J. Jeanneret;J. Jiménez;I. Kurochkin;A. Dallocchio;S. Roesler;Y. Kadi;I. Baishev;S. Calatroni;B. Dehning;H. Braun;A. Ferrari;E. Holzer;A. Grudiev

文献摘要

被引文献

相似文献

LHC准直系统已经重新设计,以应对7TeV的360 MJ光束所面临的前所未有的挑战。大型强子对撞机的布局现在已经冻结,准直和清洁的最终方法已经通过。在两个LHC环中总共保留了132个纯准直器位置,可以分阶段安装。多达88个五种不同类型的准直器将可用于初始光束操作。该系统已被充分优化,以避免超导磁体的束感应淬火和足够的生存对放射性剂量的束线组件。描述了LHC准直的分阶段方法,解释了各种准直器及其功能,并总结了预期的系统性能。大型强子对撞机项目
The LHC collimation system has been re-designed over in order to address the unprecedented challenges that are faced with the 360 MJ beams at 7 TeV. The layout of the LHC has now been frozen and a final approach for collimation and cleaning has been adopted. In total 132 pure collimator locations have been reserved in the two LHC rings and can be installed in a phased approach. Up to 88 collimators of five different types will be available for initial beam operation. The system has been fully optimized for avoiding beam-induced quenches of superconducting magnets and for sufficient survival of beamline components against radioactive dose. The phased approach for LHC collimation is described, the various collimators and their functionalities are explained, and the expected system performance is summarized. Large Hadron Collider Project