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The Large Hadron Collider Lyndon Evans CERN – European Organization for Nuclear Research, Geneva, Switzerland
Tevatron Accelerator Physics and Operation Highlights A
MIT at the Large Hadron Collider—Illuminating the High-Energy Frontier
The Compact Linear E E− Collider (CLIC): Physics Potential
The ATLAS Detector: a General Purpose Experiment at the Large Hadron Collider at CERN
Scaling Behavior of Circular Colliders Dominated by Synchrotron Radiation
Compact Linear Collider (CLIC)
The ATLAS Experiment at the CERN Large Hadron Collider
A Brief History and Review of Accelerators
Physicists Raid Tevatron for Parts Fermilab Icon Plundered Amid Tight Budgets and Shifting Scientific Aims
Introduction to Particle Accelerators and Their Limitations
The Belle II Experiment at the Superkekb
Collider Workshop
Accelerator Physics of Colliders
HADRON 95 Looking Hard for Glueballs
ATLAS Experiment 1 ATLAS Experiment
The Large Hadron Collider O
Concept of Luminosity
Top View
The Experimental Status of Glueballs
BROOKHAVEN Glueballs, Hybrids and Exotics
24. Accelerator Physics of Colliders Length RF Systems
Hypercharged Naturalness
Electron Ion Collider – the Accelerator Complex
Polarisation Measurement Using Annihilation Data at a Linear Collider Klaus Mönig∗ DESY-Zeuthen
How to Detect the Lightest Glueball
High Energy Particle Colliders: Past 20 Years, Next 20 Years and Beyond
Electron-Ion Collider Science
Discovering Uncolored Naturalness in Exotic Higgs Decays
LHC Season 2 Zation for Nuclear Research, on the Franco-Swiss Border Facts & Figures Near Geneva, Switzerland
Linear Electron-Electron Colliders
The International Linear Collider Project—Its Physics and Status
Simplified Dark Matter Models with a Long-Lived Co-Annihilation Partner
Tevatron Collider Run II: a Cinderella Story
The International Linear Collider
Coherent Synchrotron Radiation in the Isochronous Muon Collider Ring∗
Towards Tev-Scale Electron-Positron Collisions Compact Linear Collider (Clic)
Injector and Collider Rings of Superkekb B Factory
Topics in Collider Physics
A Tevatron Collider Retrospective
Japan Linear Collider (Jlc)
An Assessment of U.S.-Based Electron-Ion Collider Science
Introduction to Collider Physics
Linear Colliders (High-Energy E+/E- Colliders)
Particle Physics and the Large Hadron Collider Living Through a Very Special Time
The Compact Linear E E− Collider (CLIC): Accelerator and Detector
The Quirky Collider Signals of Folded Supersymmetry
Measuring Dark Matter at a Collider∗
The Electron-Ion Collider a Machine for Delving Deeper Than Ever Before Into the Building Blocks of Matter
B Physics with an Asymmetric Collider at KEK Abstract
The United States at the Large Hadron Collider
PARTICLE COLLIDER INTERACTION REGIONS Backgrounds and Machine-Detector Interface Lecture 3: Muon Colliders
Basics of a Photon Collider
The Large Hadron Collider LHC
Higgs and BSM Physics at the Future Muon Collider
ATLAS the ATLAS Experiment
Synchrotron Radiation and Future Colliders Kévin André, February 3Rd 2021
The ATLAS Experiment at the Large Hadron Collider
Activities on the Linear Collider Project at Kek N
Superkekb Collider
The Story of Large Electron Positron Collider 2
The International Linear Collider
The US and the ATLAS Experiment
Large Hadron Collider (Lhc) $22,300,000 +$590,000 / 2.7%
Proton Colliders: Tevatron and LHC
The Cern Synchrotrons
Fermi National Accelerator Laboratory the Tevatron Hadron Collider
Particle Physics Handout 5 the Large Hadron Collider (LHC)
The International Linear Collider. a Global Project
The Kek C-Band Rf System for a Linear Collider H
TRISTAN Inauguration
Electron–Ion Collider on the Horizon
Fermilab's Tevatron
The Compact Linear E+E− Collider (CLIC) Snowmass 2021 Loi: Physics Potential
ILC TDR | Volume 1: Executive Summary
Evolution of Particle Accelerators & Colliders
Muon Collider: a Window to New Physics
The Large Hadron Collider
Build Your Own Particle Accelerator
Tevatron Collider Operations and Plans
Muon Detection in Electron-Positron Annihilation for Muon Collider Studies
A 100 Tev SYNCHROTRON/COLLIDER BASED on the NUCLOTRON-TYPE CRYOMAGNETIC SYSTEM