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2017
The Large Hadron Collider (LHC) [1] is a 27 km circumference storage ring with counter-rotating bunched proton or lead ion beams. It is located 100 m below ground at CERN outside Geneva, Switzerland. Some of the design specifications are given in Table 3.1.
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The Large Hadron Collider (LHC) [1] is a 27 km circumference storage ring with counter-rotating bunched proton or lead ion beams. It is located 100 m below ground at CERN outside Geneva, Switzerland. Some of the design specifications are given in Table 3.1.
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2018
The Large Hadron Collider (LHC) [1] is a particle accelerator located at the European Laboratory for Particle Physics CERN near Geneva in Switzerland. It was designed to reach very high center of mass energies and luminosities for the discovery of new physics beyond the Standard Model and for the precise measurement of the Standard Model parameters in ...
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The Large Hadron Collider (LHC) [1] is a particle accelerator located at the European Laboratory for Particle Physics CERN near Geneva in Switzerland. It was designed to reach very high center of mass energies and luminosities for the discovery of new physics beyond the Standard Model and for the precise measurement of the Standard Model parameters in ...
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2019
The Large Hadron Collider (LHC) [1] is a proton and heavy ion accelerator and collider built at CERN, near Geneva. It is is located in a 27 km long underground tunnel at a depth of about 100 m. The project was approved by the CERN Council in December 1994.
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The Large Hadron Collider (LHC) [1] is a proton and heavy ion accelerator and collider built at CERN, near Geneva. It is is located in a 27 km long underground tunnel at a depth of about 100 m. The project was approved by the CERN Council in December 1994.
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2014
This chapter provides a brief introduction to the Large Hadron Collider (LHC). More information about the design, construction and operation of the LHC can be found in References.
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This chapter provides a brief introduction to the Large Hadron Collider (LHC). More information about the design, construction and operation of the LHC can be found in References.
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Physics at the Large Hadron Collider
Nuclear Physics B - Proceedings Supplements, 2003Abstract The experiments at the Large Hadron Collider LHC have a large discovery potential for physics beyond the Standard Model and in the investigation of the nature of electroweak symmetry breaking. The large event rates provided by the high luminosity LHC machine will, however, also allow to perform precision measurements of important Standard ...
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The physics of the large hadron collider
Physics of Particles and Nuclei Letters, 2012The Large Hadron Collider (LHC) at CERN in Geneva, Switzerland, is the most powerful particle accelerator in the world. Its aim is to study the physics of elementary particles at the highest energies accessible to accelerators. It is believed that the Higgs boson (a last particle predicted by the Standard Model that is yet to be found) and the lightest
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THE LARGE HADRON COLLIDER: A STATUS REPORT
From Quarks to Black Holes, 2004The status of LHC construction, machine and detectors, is reviewed, with particular emphasis on the expected physics and on the industrial production of machine components.
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Avoiding collider bias in Mendelian randomization when performing stratified analyses
European Journal of Epidemiology, 2022Dipender Gill, Stephen Burgess
exaly
Sound emission and annihilations in a programmable quantum vortex collider
Nature, 2021W J Kwon, K Xhani, Luca Galantucci
exaly