Machine Protection, Interlocks and Availability
A. Apollonio, T. Baer, K. Dahlerup-Petersen, R. Denz, I. Romera, Ramirez, R. Schmidt, A. Siemko, J. Wenninger, D. Wollmann, M. Zerlauth

TL;DR
This paper discusses the design and technological innovations of the HL-LHC upgrade, focusing on machine protection, interlocks, and availability to ensure safe operation at higher luminosities.
Contribution
It provides an overview of the key technologies and components essential for the HL-LHC upgrade, emphasizing machine protection and operational reliability.
Findings
Design considerations for high-luminosity operation
Technologies for machine protection and interlocks
Expected improvements in availability and safety
Abstract
Chapter 7 in High-Luminosity Large Hadron Collider (HL-LHC) : Preliminary Design Report. The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since opening up a new energy frontier for exploration in 2010, it has gathered a global user community of about 7,000 scientists working in fundamental particle physics and the physics of hadronic matter at extreme temperature and density. To sustain and extend its discovery potential, the LHC will need a major upgrade in the 2020s. This will increase its luminosity (rate of collisions) by a factor of five beyond the original design value and the integrated luminosity (total collisions created) by a factor ten. The LHC is already a highly complex and exquisitely optimised machine so this upgrade must be carefully conceived and will require about ten years to implement. The new configuration, known as High…
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Taxonomy
TopicsSuperconducting Materials and Applications · Particle Accelerators and Free-Electron Lasers · Particle accelerators and beam dynamics
