Mitigation of static imperfections for emittance preservation is one of the most important and challenging tasks faced by the Compact Linear Collider (CLIC) beam delivery system. A simulation campaign has been performed to recover the nominal luminosity by means of different alignment procedures. The state of the art of the tuning studies is drawn up. Comparative studies of the tuning performances and a tuning-based final focus system design optimization for two L options are presented. The effectiveness of the tuning techniques applied to these different lattices will be decisive for the final layout of the CLIC final focus system at √s = 380 GeV
This Master’s thesis work in Space Engineering was conducted at CERN under the Compact LInear Collid...
Cotutela Universitat Politècnica de Catalunya i CERNThe 4th of July 2012 was a milestone date in the...
International audienceThe first stage of the Compact Linear Collider (CLIC) is planned to be at the ...
International audienceMitigation of static imperfections for emittance preservation is one of the mo...
In this paper we present the latest results regarding the tuning study of the baseline design of the...
International audienceThe tuning aims to mitigate static imperfections of the Final Focus System (FF...
In this paper we present the latest results regarding the tuning study of the baseline design of the...
The final-focus system demagnifies the beams down to nanometer sizes in order to achieve the nominal l...
Tuning the Compact Linear Collider (CLIC) BeamDelivery System (BDS), and in particular the Final Foc...
In this paper we present the tuning study of the Compact Linear Collider - Final Focus System (CLIC-...
The future International Linear Collider (ILC) and Compact Linear Collider (CLIC) are intended for p...
Beam tuning in the beam delivery system (BDS) is one of the major challenges for the future linear c...
The accelerator and particle physics communities are considering a lepton Linear Collider LC as the ...
The Compact Linear Collider (CLIC) plans to start operation at a center-of-mass energy of 380 GeV. T...
The optimization of the 500 GeV Final Focus System is presented for the conservative beam parameters...
This Master’s thesis work in Space Engineering was conducted at CERN under the Compact LInear Collid...
Cotutela Universitat Politècnica de Catalunya i CERNThe 4th of July 2012 was a milestone date in the...
International audienceThe first stage of the Compact Linear Collider (CLIC) is planned to be at the ...
International audienceMitigation of static imperfections for emittance preservation is one of the mo...
In this paper we present the latest results regarding the tuning study of the baseline design of the...
International audienceThe tuning aims to mitigate static imperfections of the Final Focus System (FF...
In this paper we present the latest results regarding the tuning study of the baseline design of the...
The final-focus system demagnifies the beams down to nanometer sizes in order to achieve the nominal l...
Tuning the Compact Linear Collider (CLIC) BeamDelivery System (BDS), and in particular the Final Foc...
In this paper we present the tuning study of the Compact Linear Collider - Final Focus System (CLIC-...
The future International Linear Collider (ILC) and Compact Linear Collider (CLIC) are intended for p...
Beam tuning in the beam delivery system (BDS) is one of the major challenges for the future linear c...
The accelerator and particle physics communities are considering a lepton Linear Collider LC as the ...
The Compact Linear Collider (CLIC) plans to start operation at a center-of-mass energy of 380 GeV. T...
The optimization of the 500 GeV Final Focus System is presented for the conservative beam parameters...
This Master’s thesis work in Space Engineering was conducted at CERN under the Compact LInear Collid...
Cotutela Universitat Politècnica de Catalunya i CERNThe 4th of July 2012 was a milestone date in the...
International audienceThe first stage of the Compact Linear Collider (CLIC) is planned to be at the ...