Completed Physics & Astronomy Materials & Manufacturing

The High-Luminosity Upgrade of the CMS Detector

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The Large Hadron Collider’s CMS detector is getting a major rebuild to handle a tenfold increase in particle collisions by 2035. This matters because the LHC remains the world’s only machine capable of probing the most pressing questions in fundamental physics—how the Higgs boson interacts with itself, and whether undiscovered particles or forces exist beyond the Standard Model. Without the upgrade, the detector would be overwhelmed by the harsher radiation and higher collision rates needed to gather enough data. The project delivers new tracking, calorimetry, and trigger systems that will keep CMS performing at its peak. If successful, the upgrade will allow physicists to measure Higgs couplings and self-couplings with unprecedented precision, and to search for new physics with greatly enhanced sensitivity. This is fundamental science with no immediate practical application. But past investments in LHC technology have driven advances in superconducting magnets, radiation-hard electronics, and distributed computing—technologies that later found uses in medical imaging, data centres, and grid management. A deeper understanding of the Higgs field and particle mass could, in the long run, reshape how we think about energy, matter, and the fabric of the universe.

View original technical description
The Large Hadron Collider (LHC) at CERN will be the world's highest energy particle accelerator for the foreseeable future, and the only facility capable of investigating some of the highest priority topics in fundamental physics. The UK has made a substantial long-term commitment to the design, construction and operation of the CMS detector, one of the two general-purpose detectors at the LHC. LHC operation will continue until at least 2035, with ever-increasing performance required from both the accelerator complex in order to provide useful statistical reach. The CMS detector will in turn require significant and comprehensive upgrades in order to maintain performance in the presence of much harsher conditions. The upgrades described in this proposal are mandatory to allow scientific return from the LHC to continue in the long term. We propose a technically ambitious five-year project from 2019 that will deliver state-of-the-art tracking, calorimetry and trigger capabilities for CMS. These improvements will permit an order of magnitude increase in the recorded data set, allowing measurement of Higgs couplings and self-couplings, and greatly enhanced sensitivity to physics beyond the Standard Model.

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Researchers

David Newbold (Principal Investigator)Joel Goldstein (Principal Investigator)

Related Research

Grants with similar aims, by meaning.

CMS Phase 2 Upgrade Project
Upgrades of the Tracker and Trigger of the CMS experiment at the CERN LHC
R&D in preparation for an upgrade of CMS for the Super-LHC
Upgrades of the Tracker and Trigger of the CMS experiment at the CERN LHC - additional support
LHCb Upgrade: Beyond the Energy Frontier

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