In view of the CERN Proton Synchrotron proposed replacement with a new ring (PS2), a detailed optics design has been undertaken following the evaluation of several lattice options. The basic arc module consists of cells providing negative momentum compaction. The straight section is formed with a combination of FODO and quadrupole triplet cells, to accommodate the injection and extraction systems, in particular the H{sup -} injection elements. The arc is matched to the straight section with a dispersion suppressor and matching module. Different lattices are compared with respect to their linear optics functions, tuning flexibility and geometrical acceptance properties
The goal of this manuscript is to give an introduction into the design of the magnet lattice and as ...
The HL-LHC (High Luminosity LHC) project aims to an increase of the luminosity of the LHC by a facto...
In version 6 of the LHC lattice the pairs of standard arc and additional trim quadrupoles in the dis...
In view of the CERN Proton Synchrotron proposed replacement with a new ring (PS2), a detailed optics...
The PS2 ring is designed with Negative Momentum Compaction (NMC) arc cells and doublet straights. In...
The PS2 ring is designed with Negative Momentum Compaction (NMC) arc cells and doublet straights. In...
The PS2 lattice, based on Negative Momentum Compaction (NMC) arc cells is being optimized in order t...
The effect of magnet misalignments in the beam orbit and linear optics functions are reviewed and co...
This paper describes a detailed analysis of various nonlinear effects of the nominal Negative Moment...
The prospects for future high-power proton beams for producing neutrinos at CERN within the LAGUNA-L...
The Large Hadron Collider (LHC) upgrade, which aims at reaching significantly higher luminosities at ...
At present the new proton synchrotron PS2 with the energy range 4-50 GeV is discussed to upgrade LHC...
In this paper, we present a new lattice design for the International Linear Collider (ILC) positron ...
International audienceA long list of optics and beam dynamics challenges for pp colliders includes t...
Muon collider is a promising candidate for the next energy frontier machine. However, in order to ob...
The goal of this manuscript is to give an introduction into the design of the magnet lattice and as ...
The HL-LHC (High Luminosity LHC) project aims to an increase of the luminosity of the LHC by a facto...
In version 6 of the LHC lattice the pairs of standard arc and additional trim quadrupoles in the dis...
In view of the CERN Proton Synchrotron proposed replacement with a new ring (PS2), a detailed optics...
The PS2 ring is designed with Negative Momentum Compaction (NMC) arc cells and doublet straights. In...
The PS2 ring is designed with Negative Momentum Compaction (NMC) arc cells and doublet straights. In...
The PS2 lattice, based on Negative Momentum Compaction (NMC) arc cells is being optimized in order t...
The effect of magnet misalignments in the beam orbit and linear optics functions are reviewed and co...
This paper describes a detailed analysis of various nonlinear effects of the nominal Negative Moment...
The prospects for future high-power proton beams for producing neutrinos at CERN within the LAGUNA-L...
The Large Hadron Collider (LHC) upgrade, which aims at reaching significantly higher luminosities at ...
At present the new proton synchrotron PS2 with the energy range 4-50 GeV is discussed to upgrade LHC...
In this paper, we present a new lattice design for the International Linear Collider (ILC) positron ...
International audienceA long list of optics and beam dynamics challenges for pp colliders includes t...
Muon collider is a promising candidate for the next energy frontier machine. However, in order to ob...
The goal of this manuscript is to give an introduction into the design of the magnet lattice and as ...
The HL-LHC (High Luminosity LHC) project aims to an increase of the luminosity of the LHC by a facto...
In version 6 of the LHC lattice the pairs of standard arc and additional trim quadrupoles in the dis...