The LHC and SPS transverse dampers use beam position electronics with I,Q detection at 400 MHz and 200 MHz, of the sum and difference signals from a strip-line pick-up. Digitization is performed to give synchronous bunch-by-bunch data at the rate of 40 MHz corresponding to the bunch spacing of 25 ns. A performance in the um range is achieved with beams in LHC and has contributed to the high performance of the essential transverse feedback during the LHC run 1. In the present paper we review the systems deployed and their performance as well as the potential of the I,Q detection to also detect intra-bunch motion. The principle is illustrated using data from the LHC scrubbing runs in which intra-bunch motion is expected and has been observed ...
Reliable detection of developing transverse instabilities in the Large Hadron Collider is one of the...
Transverse beam instabilities are a major cause of emittance dilution and beam losses in high intens...
The unprecedented intensity and energy of the LHC proton beams will require an excellent control of ...
The LHC Transverse Feedback System is designed to damp and counteract all possible coupled bunch mod...
We show how bunch-by-bunch position data from the LHC transverse feedback system can be used to dete...
We show how bunch-by-bunch position data from the LHC transverse feedback system can be used to dete...
Today Hadron Accelerators with high intensity and high brightness beams increasingly rely on transve...
The proposed SPS Wideband Transverse Feedback system requires a wide-band pick-up system to be able ...
We present the architecture and implementation overview of a digital signal processing system develo...
A bunch by bunch transverse feedback system, as a complement of the longitudinal feedback system req...
The proposed SPS Wideband Transverse Feedback sys- tem requires a wide-band pick-up system to be abl...
We present recent measurements demonstrating control of unstable beam motion in single bunch and bun...
The transverse feedback system in LHC provides turn-by-turn, bunch-by-bunch measurements of the beam...
Transverse coupling has been linked to instabilities and reduction in dynamic aperture and is hence ...
The SPS at high intensities exhibits transverse single-bunch instabilities with signatures consisten...
Reliable detection of developing transverse instabilities in the Large Hadron Collider is one of the...
Transverse beam instabilities are a major cause of emittance dilution and beam losses in high intens...
The unprecedented intensity and energy of the LHC proton beams will require an excellent control of ...
The LHC Transverse Feedback System is designed to damp and counteract all possible coupled bunch mod...
We show how bunch-by-bunch position data from the LHC transverse feedback system can be used to dete...
We show how bunch-by-bunch position data from the LHC transverse feedback system can be used to dete...
Today Hadron Accelerators with high intensity and high brightness beams increasingly rely on transve...
The proposed SPS Wideband Transverse Feedback system requires a wide-band pick-up system to be able ...
We present the architecture and implementation overview of a digital signal processing system develo...
A bunch by bunch transverse feedback system, as a complement of the longitudinal feedback system req...
The proposed SPS Wideband Transverse Feedback sys- tem requires a wide-band pick-up system to be abl...
We present recent measurements demonstrating control of unstable beam motion in single bunch and bun...
The transverse feedback system in LHC provides turn-by-turn, bunch-by-bunch measurements of the beam...
Transverse coupling has been linked to instabilities and reduction in dynamic aperture and is hence ...
The SPS at high intensities exhibits transverse single-bunch instabilities with signatures consisten...
Reliable detection of developing transverse instabilities in the Large Hadron Collider is one of the...
Transverse beam instabilities are a major cause of emittance dilution and beam losses in high intens...
The unprecedented intensity and energy of the LHC proton beams will require an excellent control of ...