The flexibility of the LHC injectors combined with multiple longitudinal beam gymnastics have significantly contributed to the excellent performance of the LHC during its first run, delivering beam with twice the ultimate brightness with 50 ns bunch spacing. To meet the requirements of the High Luminosity LHC, 25 ns bunch spacing is required, the intensity per bunch at injection has to double and brightness shall almost triple. Extensive hardware modifications or additions are therefore necessary in all accelerators of the injector complex, as well as new beam gymnastics
The LHC will be supplied with protons from the injector chain Linac2-PS Booster-PS-SPS. The beam mus...
The LHC will run to produce physics at the energy frontier of 13-14 TeV c.o.m. for protons for the n...
This paper reviews the most promising ingredients to boost the LHC integrated luminosity, including ...
CERN's LHC injectors are delivering high-brightness proton and ion beams for the Large Hadron Collid...
The possible upgrade of the LHC injector chain is a crucial step towards the LHC luminosity upgrade ...
The design and construction of new injectors will allow to boost the luminosity of the LHC. Two cons...
The characteristics of the beam required for the Large Hadron Collider (LHC) impose stringent requir...
The LHC pre-injector complex, comprising Linac 2, the PS Booster (PSB) and the PS, has undergone a m...
The present status of the nominal LHC beam in the LHC injector complex and the limitations towards t...
I report the results of a CERN task force set up to investigate a possible staged upgrade of the LHC...
High-intensity and high-brightness beams are key ingredients to maximize the integrated luminosity o...
The presently known intensity and brightness limitations in the LHC Proton Injectors are reviewed an...
The challenges for increasing intensity and reducing bunch spacing in the present LHC injectors are ...
High-intensity and high-brightness beams are key ingredients to maximize the LHC integrated luminosi...
The High Luminosity upgrade of the Large Hadron Collider (HL-LHC) will rely on significantly higher ...
The LHC will be supplied with protons from the injector chain Linac2-PS Booster-PS-SPS. The beam mus...
The LHC will run to produce physics at the energy frontier of 13-14 TeV c.o.m. for protons for the n...
This paper reviews the most promising ingredients to boost the LHC integrated luminosity, including ...
CERN's LHC injectors are delivering high-brightness proton and ion beams for the Large Hadron Collid...
The possible upgrade of the LHC injector chain is a crucial step towards the LHC luminosity upgrade ...
The design and construction of new injectors will allow to boost the luminosity of the LHC. Two cons...
The characteristics of the beam required for the Large Hadron Collider (LHC) impose stringent requir...
The LHC pre-injector complex, comprising Linac 2, the PS Booster (PSB) and the PS, has undergone a m...
The present status of the nominal LHC beam in the LHC injector complex and the limitations towards t...
I report the results of a CERN task force set up to investigate a possible staged upgrade of the LHC...
High-intensity and high-brightness beams are key ingredients to maximize the integrated luminosity o...
The presently known intensity and brightness limitations in the LHC Proton Injectors are reviewed an...
The challenges for increasing intensity and reducing bunch spacing in the present LHC injectors are ...
High-intensity and high-brightness beams are key ingredients to maximize the LHC integrated luminosi...
The High Luminosity upgrade of the Large Hadron Collider (HL-LHC) will rely on significantly higher ...
The LHC will be supplied with protons from the injector chain Linac2-PS Booster-PS-SPS. The beam mus...
The LHC will run to produce physics at the energy frontier of 13-14 TeV c.o.m. for protons for the n...
This paper reviews the most promising ingredients to boost the LHC integrated luminosity, including ...