The Large Hadron Collider (LHC) has recently started-up at CERN. It will provide colliding beams to four experiments installed in large underground caverns. A specially designed and constructed sector of the LHC beam vacuum system transports the beams though each of these collision regions, forming a primary interface between machine and experiment. ATLAS [1] is the largest of the four LHC colliding beam experiments, being some 40 m long and 22 m in diameter. Physics performance, geometry and access imposed a large number of constraints on the design of the beam vacuum system. This paper describes the geometry and layout of the ATLAS beam vacuum system. Specific technologies developed for ATLAS, and for the alignment and installation of the...
The biggest existing multi-purpose particle detector, ATLAS, is now built and running at CERN. Detai...
The Large Hadron Collider (LHC) incorporates many technological innovations in order to achieve its ...
The apertures for the vacuum chambers at the interaction points inside the LHC experiments are key b...
The Large Hadron Collider (LHC) has recently started-up at CERN. It will provide colliding beams to ...
The LHC collider has recently completed commissioning at CERN. At four points around the 27 km ring,...
The history of particle colliders begins in the early 60's when an idea previously patented by R. Wi...
ATLAS is a general-purpose experiment that will exploit the full potential of the LHC p-p collision ...
The bake-out and activation of the TiZrV NEG coatings of the 6 km Long Straight Sections (LSS) of th...
Beam losses in high-energy particle accelerators are responsible for beam lifetime degradation. In t...
The status of the ATLAS detector shortly before the start-up of the LHC is presented. The progress i...
The Large Hadron Collider (LHC) project, now in the advanced construction phase at CERN, comprises t...
CERN operated over the more than 50 years of its existence particle accelerators and storage rings r...
The Large Hadron Collider Project LHC was approved by the CERN Council in December 1994. Commissioni...
The Large Hadron Collider (LHC), currently under operation at CERN, is colliding intense proton beam...
The Large Hadron Collider (LHC), approved by the CERN Council in December 1994, will be the premiere...
The biggest existing multi-purpose particle detector, ATLAS, is now built and running at CERN. Detai...
The Large Hadron Collider (LHC) incorporates many technological innovations in order to achieve its ...
The apertures for the vacuum chambers at the interaction points inside the LHC experiments are key b...
The Large Hadron Collider (LHC) has recently started-up at CERN. It will provide colliding beams to ...
The LHC collider has recently completed commissioning at CERN. At four points around the 27 km ring,...
The history of particle colliders begins in the early 60's when an idea previously patented by R. Wi...
ATLAS is a general-purpose experiment that will exploit the full potential of the LHC p-p collision ...
The bake-out and activation of the TiZrV NEG coatings of the 6 km Long Straight Sections (LSS) of th...
Beam losses in high-energy particle accelerators are responsible for beam lifetime degradation. In t...
The status of the ATLAS detector shortly before the start-up of the LHC is presented. The progress i...
The Large Hadron Collider (LHC) project, now in the advanced construction phase at CERN, comprises t...
CERN operated over the more than 50 years of its existence particle accelerators and storage rings r...
The Large Hadron Collider Project LHC was approved by the CERN Council in December 1994. Commissioni...
The Large Hadron Collider (LHC), currently under operation at CERN, is colliding intense proton beam...
The Large Hadron Collider (LHC), approved by the CERN Council in December 1994, will be the premiere...
The biggest existing multi-purpose particle detector, ATLAS, is now built and running at CERN. Detai...
The Large Hadron Collider (LHC) incorporates many technological innovations in order to achieve its ...
The apertures for the vacuum chambers at the interaction points inside the LHC experiments are key b...