Tag: LHCb

  • Past and Present of the LHC Physics Programme: A Viewpoint

    Past and Present of the LHC Physics Programme: A Viewpoint

    Before the LHC began operations, expectations were immense. It was not perceived simply as CERN’s next machine after LEP, but as “the next machine after everything”—a collider expected to settle how electroweak symmetry is broken.

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  • From Run 3 to the next generation: following the transformation of the LHC experiments

    From Run 3 to the next generation: following the transformation of the LHC experiments

    From dismantling detector components to installing new technologies, the transition from Run 3 to the next generation of LHC experiments is a major scientific and engineering undertaking. We follow the teams behind this transformation, exploring the challenges inside the experimental caverns and the expertise across CERN’s EP Department that helps turn ambitious upgrade plans into…

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  • New Staff Members and Fellows – Autumn 2026

    New Staff Members and Fellows – Autumn 2026

    New Staff Members and Fellows – Autumn 2026 Christian Appelt  Hello, I’m Christian. I’ve joined EP-ATL-SO as a Research Fellow. I completed professional training as an electronics technician, worked in industry for 5 years, and studied electrical engineering (BEng) and physics (BSc, MSc, PhD). I’ve worked at several research institutes; in ATLAS, I’ve been involved in and am leading long-lived particle searches, the production

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  • colibri: CERN VHDL Common Library released for Everyone to Use

    colibri: CERN VHDL Common Library released for Everyone to Use

    CERN has released colibri, an open-source library designed to make FPGA gateware more portable, reliable and independent of individual vendors. Developed with support from the CERN EP R&D programme, it provides more than 100 verified VHDL components and is already used by over ten projects within and beyond CERN.

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  • A Hundred Gigabits per Fibre: Silicon Photonics Links for the Detectors of Tomorrow

    A Hundred Gigabits per Fibre: Silicon Photonics Links for the Detectors of Tomorrow

    The High-Speed Links Work Package (WP6) of the EP R&D programme is developing the radiation-tolerant, high-bandwidth optical links needed for future particle detectors. Combining custom ASICs, Silicon Photonics and FPGA-based back-end systems, the team is now moving towards integrated demonstrations in an experimental context.

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  • Key4hep: A software framework for future collider studies

    Key4hep: A software framework for future collider studies

    Key4hep brings future-collider communities together around a shared software framework for detector design and physics studies. By integrating tools for event generation, simulation, reconstruction and analysis, it reduces duplication, facilitates comparisons and allows each project to adapt the software to its own detector and scientific goals.

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  • Designing for the unusual: LLP2026 and the lifetime frontier

    Designing for the unusual: LLP2026 and the lifetime frontier

    LLP2026 brought around 80 theorists and experimentalists to Cambridge at a moment of transition for the lifetime frontier. From new searches using Run 3 LHC data and unconventional signatures to prototype detectors and new experimental concepts, the workshop showed how long-recognised blind spots are being turned into concrete experimental capabilities.

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  • Particle Physics Meets Economics

    Particle Physics Meets Economics

    From particle collisions to commodity markets: the HighLo project is exploring how data-analysis tools developed for particle physics can help identify patterns and anomalies in financial data.

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  • Bundling Forces for Future Online Computing: Introducing the CDO Projec

    Bundling Forces for Future Online Computing: Introducing the CDO Projec

    Discover the Control Acquisition and Online Computing (CDO) Project, an initiative of the Experimental Physics Department that brings together diverse expertise, ideas and perspectives to strengthen collaboration across the community.

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  • LHCb explores new light-ion territory with special LHC runs

    LHCb explores new light-ion territory with special LHC runs

    LHCb explores new light-ion territory with special LHC runs In summer 2025, the LHC entered new territory. For the first time, the machine delivered proton–oxygen, oxygen–oxygen and neon–neon collisions to its experiments, as part of a short but technically demanding special ion run. For LHCb, the run provided a rare opportunity to explore heavy-ion physics

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