In the 3-GeV rapid cycling synchrotron of the Japan Proton Accelerator Research Complex, transverse injection painting is utilized not only to suppress space-charge induced beam loss in the low energy region but also to mitigate foil scattering beam loss during charge-exchange injection. The space-charge induced beam loss is well minimized by the combination of modest transverse painting and full longitudinal painting. But, for sufficiently mitigating the foil scattering part of beam loss, the transverse painting area has to be further expanded. However, such a wide-ranging transverse painting had not been realized until recently due to beta function beating caused by edge focusing of pulsed injection bump magnets during injection. This bet...
The eighth-order space-charge-induced resonance 8ν_{y}=171 was identified as the source of beam loss...
GeV electron bunches accelerated on a centimeter scale device exemplify the extraordinary advances o...
Top-up operation has been started from May 2004 at SPring-8. For this operation it is important that...
The 3-GeV rapid cycling synchrotron (RCS) of the Japan Proton Accelerator Research Complex was commi...
The transverse injection painting scheme is widely adopted in many high-intensity hadron synchrotron...
The 3-GeV rapid cycling synchrotron (RCS) of Japan Proton Accelerator Research Complex (J-PARC) simu...
The transverse impedance of eight extraction pulsed kicker magnets is a strong beam instability sour...
In the 3 GeV rapid cycling synchrotron of the Japan Proton Accelerator Research Complex, significant...
High intensity proton synchrotrons provide beams for several types of facility around the world, inc...
High intensity proton synchrotrons provide beams for several types of facility around the world, inc...
The 3-GeV Rapid Cycling Synchrotron (RCS) of J-PARC is designed to accelerate 8.3×1013 protons per p...
The aim of the beta-beams is to produce pure electron neutrino and anti-neutrino highly energetic be...
Transverse beam instabilities at injection prevent the Fermilab Main Ring from storing higher intens...
GeV electron bunches accelerated on a centimeter scale device exemplify the extraordinary advances o...
© 2011 Dr. David PeakeThe Australian Synchrotron is a newly commissioned third-generation light sour...
The eighth-order space-charge-induced resonance 8ν_{y}=171 was identified as the source of beam loss...
GeV electron bunches accelerated on a centimeter scale device exemplify the extraordinary advances o...
Top-up operation has been started from May 2004 at SPring-8. For this operation it is important that...
The 3-GeV rapid cycling synchrotron (RCS) of the Japan Proton Accelerator Research Complex was commi...
The transverse injection painting scheme is widely adopted in many high-intensity hadron synchrotron...
The 3-GeV rapid cycling synchrotron (RCS) of Japan Proton Accelerator Research Complex (J-PARC) simu...
The transverse impedance of eight extraction pulsed kicker magnets is a strong beam instability sour...
In the 3 GeV rapid cycling synchrotron of the Japan Proton Accelerator Research Complex, significant...
High intensity proton synchrotrons provide beams for several types of facility around the world, inc...
High intensity proton synchrotrons provide beams for several types of facility around the world, inc...
The 3-GeV Rapid Cycling Synchrotron (RCS) of J-PARC is designed to accelerate 8.3×1013 protons per p...
The aim of the beta-beams is to produce pure electron neutrino and anti-neutrino highly energetic be...
Transverse beam instabilities at injection prevent the Fermilab Main Ring from storing higher intens...
GeV electron bunches accelerated on a centimeter scale device exemplify the extraordinary advances o...
© 2011 Dr. David PeakeThe Australian Synchrotron is a newly commissioned third-generation light sour...
The eighth-order space-charge-induced resonance 8ν_{y}=171 was identified as the source of beam loss...
GeV electron bunches accelerated on a centimeter scale device exemplify the extraordinary advances o...
Top-up operation has been started from May 2004 at SPring-8. For this operation it is important that...