Accelerator physics needs advanced modeling and simulation techniques, in particular for beam stability studies. A deeper understanding of the effects of magnetic fields nonlinearities will greatly help in the improvement of future colliders design and performance. This paper presents a study of quadrupole tracking using realistic field maps and measured or simulated longitudinal harmonics. The main goal is to describe the effect of the longitudinal dependence of high order non-homogeneity of the field in the case of the HL-LHC inner triplet
Fringe fields in multipole magnets can have a variety of effects on the linear and nonlinear dynamic...
A model of the Fermilab Muon g-2 Experiment storage ring is developed with the BMAD simulation libra...
At the Large Hadron Collider (LHC) at CERN one of the difficult requirements during the energy ramp ...
Accelerator physics needs advanced modeling and simulation techniques, in particular for beam stabi...
Accelerator physics needs advanced modeling and simulation techniques, in particular for beam stabil...
Accelerator physics needs advanced modeling and simulation techniques, in particular for beam stabi...
International audienceAccelerator physics needs advanced modeling and simulation techniques, in part...
The LHC control system requires an accurate forecast of the magnetic field and the multipole field e...
The analytical treatment previously described by Guingard and Hagel (1998) has been extended to incl...
During LHC operation, an energy of up to 360 MJ will be stored in each proton beam. A magnet failure...
The LHC control system requires an accurate forecast of the magnetic field and the multipole field e...
Magnetic quadrupoles are essential components of particle accelerators like the Large Hadron Collide...
The HL-LHC Upgrade project relies on large aperture magnets (mainly the inner Triplet and the separa...
At the Large Hadron Collider (LHC) at CERN one of the difficult requirements during the energy ramp ...
Superconducting quadrupole magnets operating in superfluid helium at 1.9 K, with 70 mm bore and nomi...
Fringe fields in multipole magnets can have a variety of effects on the linear and nonlinear dynamic...
A model of the Fermilab Muon g-2 Experiment storage ring is developed with the BMAD simulation libra...
At the Large Hadron Collider (LHC) at CERN one of the difficult requirements during the energy ramp ...
Accelerator physics needs advanced modeling and simulation techniques, in particular for beam stabi...
Accelerator physics needs advanced modeling and simulation techniques, in particular for beam stabil...
Accelerator physics needs advanced modeling and simulation techniques, in particular for beam stabi...
International audienceAccelerator physics needs advanced modeling and simulation techniques, in part...
The LHC control system requires an accurate forecast of the magnetic field and the multipole field e...
The analytical treatment previously described by Guingard and Hagel (1998) has been extended to incl...
During LHC operation, an energy of up to 360 MJ will be stored in each proton beam. A magnet failure...
The LHC control system requires an accurate forecast of the magnetic field and the multipole field e...
Magnetic quadrupoles are essential components of particle accelerators like the Large Hadron Collide...
The HL-LHC Upgrade project relies on large aperture magnets (mainly the inner Triplet and the separa...
At the Large Hadron Collider (LHC) at CERN one of the difficult requirements during the energy ramp ...
Superconducting quadrupole magnets operating in superfluid helium at 1.9 K, with 70 mm bore and nomi...
Fringe fields in multipole magnets can have a variety of effects on the linear and nonlinear dynamic...
A model of the Fermilab Muon g-2 Experiment storage ring is developed with the BMAD simulation libra...
At the Large Hadron Collider (LHC) at CERN one of the difficult requirements during the energy ramp ...