Between 2015 and 2018 the LHC was operated with protons at beam energies of 6.5 TeV with an integrated production of 160 fb-1 both ATLAS and CMS in proton operation. The peak proton performance exceeded twice the design luminosity thanks to very small transverse beam emittances and beta* of 30 cm. The nominal bunch spacing of 25 ns was used for high intensity operation, initially with the standard 25 ns beam and from 2016 onwards with BCMS and 8b4e beams. New features such as combined ramp and squeeze, crossing angle and levelling as well as ATS optics (Achromatic Telescopic Squeeze) were introduced in regular operation between 2016 and 2018. Lead ion, mixed proton-lead, intermediate proton energy, vdm calibration and high-beta runs were a...
The Large Hadron Collider (LHC) at CERN (Geneva) was commissioned and operated in the years 2009-201...
In 2015 the Large Hadron Collider (LHC) entered the first year in its second long Run, after a 2-yea...
The LHC performance during the proton-lead run in 2016 fully relied on a permanent monitoring and sy...
In May 2017, the CERN Large Hadron Collider (LHC) restarted operations at 6.5 TeV using the Achromat...
Run 2 of the CERN Large Hadron Collider (LHC) started in April 2015 and was successfully completed o...
Between 2010 and 2013 the LHC was operated with protons at beam energies of 3.5 and 4 TeV. The proto...
LHC operation restarted in 2015 after the first Long Shutdown, planning for a 4-year long run until ...
This paper shows the baseline LHC machine parameters for the 2015 start-up. Many systems have been u...
The fourth one-month Pb-Pb collision run brought LHC Run 2 to an end in December 2018. Following the...
During 2017, the Large Hadron Collider LHC delivered luminosity for different physics configuration ...
In 2015 the Large Hadron Collider (LHC) restarted for Run 2 after an almost two year long shutdown t...
The first proton run of the LHC was very successful and resulted in important physics discoveries. I...
The choice of parameters for proton operation in the LHC in 2009 is subject to constraints from beam...
For five of the LHC experiments the second p-Pb collision run planned in 2016 offered the opportunit...
The variety of beams, needed to set-up in the injectors as requested in the LHC, are reviewed, in te...
The Large Hadron Collider (LHC) at CERN (Geneva) was commissioned and operated in the years 2009-201...
In 2015 the Large Hadron Collider (LHC) entered the first year in its second long Run, after a 2-yea...
The LHC performance during the proton-lead run in 2016 fully relied on a permanent monitoring and sy...
In May 2017, the CERN Large Hadron Collider (LHC) restarted operations at 6.5 TeV using the Achromat...
Run 2 of the CERN Large Hadron Collider (LHC) started in April 2015 and was successfully completed o...
Between 2010 and 2013 the LHC was operated with protons at beam energies of 3.5 and 4 TeV. The proto...
LHC operation restarted in 2015 after the first Long Shutdown, planning for a 4-year long run until ...
This paper shows the baseline LHC machine parameters for the 2015 start-up. Many systems have been u...
The fourth one-month Pb-Pb collision run brought LHC Run 2 to an end in December 2018. Following the...
During 2017, the Large Hadron Collider LHC delivered luminosity for different physics configuration ...
In 2015 the Large Hadron Collider (LHC) restarted for Run 2 after an almost two year long shutdown t...
The first proton run of the LHC was very successful and resulted in important physics discoveries. I...
The choice of parameters for proton operation in the LHC in 2009 is subject to constraints from beam...
For five of the LHC experiments the second p-Pb collision run planned in 2016 offered the opportunit...
The variety of beams, needed to set-up in the injectors as requested in the LHC, are reviewed, in te...
The Large Hadron Collider (LHC) at CERN (Geneva) was commissioned and operated in the years 2009-201...
In 2015 the Large Hadron Collider (LHC) entered the first year in its second long Run, after a 2-yea...
The LHC performance during the proton-lead run in 2016 fully relied on a permanent monitoring and sy...