A high-energy (0.5-3.0 TeV centre of mass) electron-positron Compact Linear Collider (CLIC) is being studied at CERN as a new physics facility. The design study has been optimized for 3 TeV centre-of-mass energy. Intense bunches injected into the main linac must have unprecedentedly small emittances to achieve the design luminosity 1035cm-2s-1 required for the physics experiments. The positron and electron bunch trains will be provided by the CLIC injection complex. This thesis describes an optics design and performance of a positron damping ring developed for producing such ultra-low emittance beam. The linear optics of the CLIC damping ring is optimized by taking into account the combined action of radiation damping, quantum excitation an...
The Compact Linear Collider (CLIC) study explores the scheme for an electron-positron collider with ...
The International Linear Collider (ILC) is a proposed 500GeV center-of-mass electron/positron collid...
A study on the sensitivity of the CLIC Damping Ring lattice to different sources of misalignment is ...
A high-energy (0.5-3.0 TeV centre of mass) electron-positron Compact Linear Collider (CLIC) is being...
A e+/e- linear collider, the Compact Linear Collider (CLIC) is under design at CERN, aiming to explo...
The CLIC damping rings should produce the ultra-low emittance with high bunch charge necessary for t...
The CLIC damping rings aim at unprecedented small normalized equilibrium emittances of 3.3 nm vertic...
The Compact Linear Colider (CLIC) is designed to operate at 3 TeV centre-of-mass energy with a total...
Damping rings with very small normalized equilibrium emittance and short damping times are required ...
We report on the lattice design of the Next Linear Collider (NLC) damping rings. The damping rings a...
The CLIC pre-damping rings have to accommodate a large emittance beam, coming in particular from the...
We report on the lattice design of the Next Linear Collider (NLC) damping rings. The damping rings ...
Following the recommendations of the European Strategy Group for High Energy Physics, CERN launched ...
In view of the plans for a future electron/positron linear collider based on the CLIC technology, an...
The Compact Linear Collider (CLIC) is a proposed TeV-scale electron-positron collider under developm...
The Compact Linear Collider (CLIC) study explores the scheme for an electron-positron collider with ...
The International Linear Collider (ILC) is a proposed 500GeV center-of-mass electron/positron collid...
A study on the sensitivity of the CLIC Damping Ring lattice to different sources of misalignment is ...
A high-energy (0.5-3.0 TeV centre of mass) electron-positron Compact Linear Collider (CLIC) is being...
A e+/e- linear collider, the Compact Linear Collider (CLIC) is under design at CERN, aiming to explo...
The CLIC damping rings should produce the ultra-low emittance with high bunch charge necessary for t...
The CLIC damping rings aim at unprecedented small normalized equilibrium emittances of 3.3 nm vertic...
The Compact Linear Colider (CLIC) is designed to operate at 3 TeV centre-of-mass energy with a total...
Damping rings with very small normalized equilibrium emittance and short damping times are required ...
We report on the lattice design of the Next Linear Collider (NLC) damping rings. The damping rings a...
The CLIC pre-damping rings have to accommodate a large emittance beam, coming in particular from the...
We report on the lattice design of the Next Linear Collider (NLC) damping rings. The damping rings ...
Following the recommendations of the European Strategy Group for High Energy Physics, CERN launched ...
In view of the plans for a future electron/positron linear collider based on the CLIC technology, an...
The Compact Linear Collider (CLIC) is a proposed TeV-scale electron-positron collider under developm...
The Compact Linear Collider (CLIC) study explores the scheme for an electron-positron collider with ...
The International Linear Collider (ILC) is a proposed 500GeV center-of-mass electron/positron collid...
A study on the sensitivity of the CLIC Damping Ring lattice to different sources of misalignment is ...