Beam Instrumentation and Diagnostics for the LHC Upgrade
Author(s) -
E. Bravin,
B. Dehning,
R. Jones,
T. Lefèvre
Publication year - 2015
Publication title -
advanced series on directions in high energy physics
Language(s) - English
Resource type - Book series
ISSN - 1793-1339
DOI - 10.1142/9789814675475_0020
Subject(s) - upgrade , instrumentation (computer programming) , large hadron collider , beam (structure) , nuclear engineering , nuclear physics , computer science , engineering , systems engineering , physics , operating system , optics
The extensive array of beam instrumentation with which the LHC is equipped, has played a major role in its commissioning, rapid intensity ramp-up and safe and reliable operation. High Luminosity LHC (HL-LHC) brings with it a number of new challenges in terms of beam instrumentation that will be discussed in this chapter. The beam loss system will need significant upgrades in order to be able to cope with the demands of HL-LHC, with cryogenic beam loss monitors under investigation for deployment in the new inner triplet magnets to distinguish between primary beam losses and collision debris. Radiation tolerant integrated circuits are also being developed to allow the front-end electronics to sit much closer to the detector. Upgrades to other existing systems are also envisaged; including the beam position measurement system in the interaction regions and the addition of a halo measurement capability to synchrotron light diagnostics. Additionally, several new diagnostic systems are under investigation, such as very high bandwidth pick-ups and a streak camera installation, both able to perform intra-bunch measurements of transverse position on a turn by turn basis.
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