Landau damping is an essential mechanism for ensuring collective beam stability in particle accelerators. Precise knowledge of the strength of Landau damping is key to making accurate predictions on beam stability for state-of-the-art high-energy colliders. In this Letter, we demonstrate an experimental procedure that would allow quantifying the strength of Landau damping and the limits of beam stability using an active transverse feedback as a controllable source of beam coupling impedance. In a proof-of-principle test performed at the Large Hadron Collider, stability diagrams for a range of Landau octupole strengths have been measured. In the future, the procedure could become an accurate way of measuring stability diagrams throughout the...
The High Luminosity (HL) upgrade of the Large Hadron Collider (LHC) will increase the peak luminosit...
The effect of Landau damping is often calculated assuming a Gaussian beam distribution in all transv...
Most hadron synchrotrons rely on lattice nonlinearities for Landau damping of impedance driven coher...
Landau damping is an essential mechanism for ensuring the transverse beam stability in LHC and its u...
Beam Transfer Function (BTF) measurements are direct measurement of the stability diagrams that defin...
Instability thresholds are explored at the Large Hadron Collider (LHC) by means of the computation o...
Stability diagrams quantify the LHC stability thresholds due to the beam coupling impedance. Beam Tr...
The Landau damping mechanism stabilizes the impedance driven head-tail modes in hadron synchrotrons....
Transverse collective instabilities induced by the beam-coupling impedance of the accelerator struct...
The motion of high energetic particle beams in accelerators is influenced by their interactions with...
This paper discusses measurements on the stabilization of single bunches with second order chromatic...
Since the first transverse instability observed in 2010, many studies have been performed on both me...
A large number of collective instability mechanisms act on high-intensity beams. It is necessary ...
Abstract Landau damping is the suppression of an instability by a spread of frequencies in the beam....
This paper discusses measurements on the stabilization of single bunches with second order chromatic...
The High Luminosity (HL) upgrade of the Large Hadron Collider (LHC) will increase the peak luminosit...
The effect of Landau damping is often calculated assuming a Gaussian beam distribution in all transv...
Most hadron synchrotrons rely on lattice nonlinearities for Landau damping of impedance driven coher...
Landau damping is an essential mechanism for ensuring the transverse beam stability in LHC and its u...
Beam Transfer Function (BTF) measurements are direct measurement of the stability diagrams that defin...
Instability thresholds are explored at the Large Hadron Collider (LHC) by means of the computation o...
Stability diagrams quantify the LHC stability thresholds due to the beam coupling impedance. Beam Tr...
The Landau damping mechanism stabilizes the impedance driven head-tail modes in hadron synchrotrons....
Transverse collective instabilities induced by the beam-coupling impedance of the accelerator struct...
The motion of high energetic particle beams in accelerators is influenced by their interactions with...
This paper discusses measurements on the stabilization of single bunches with second order chromatic...
Since the first transverse instability observed in 2010, many studies have been performed on both me...
A large number of collective instability mechanisms act on high-intensity beams. It is necessary ...
Abstract Landau damping is the suppression of an instability by a spread of frequencies in the beam....
This paper discusses measurements on the stabilization of single bunches with second order chromatic...
The High Luminosity (HL) upgrade of the Large Hadron Collider (LHC) will increase the peak luminosit...
The effect of Landau damping is often calculated assuming a Gaussian beam distribution in all transv...
Most hadron synchrotrons rely on lattice nonlinearities for Landau damping of impedance driven coher...