The maximum beam current that can be accelerated in an energy recovery linac (ERL) can be severely limited by the transverse multi-pass beam breakup instability (BBU), especially M. future EEL light sources with multi-GeV high energy beam energy and more than 100 mA average current. In this paper, the multi-pass BBU of such a high energy ERL is studied based on the simulation of a 3-GeV ERL light source that is proposed by KEK. This work is expected to provide a reference for future high energy ERL projects.Physics, NuclearPhysics, Particles & FieldsSCI(E)中国科技核心期刊(ISTIC)中国科学引文数据库(CSCD)0ARTICLEhuangsl@pku.edu.cn; kxliu@pku.edu.cn1null3
ERL-06-04 The total current that can be accelerated in an Energy Recovery Linear Accelerator (ERL) c...
Generally, the Energy Recovery Linac (ERL) needs specially designed high current superconducting RF ...
Beam breakup (BBU) instabilities in superconducting linacs are a significant issue due to the potent...
Multi-pass, multi-bunch beam-breakup has been long known to be a potential limiting factor for the c...
Several possible scenarios of Energy Recovery Linac (ERL) beam optics design are investigated to sup...
Helmholtz Zentrum Berlin officially started Jan. 2011 the design and construction of the Berlin Ener...
A new generation of particle accelerators based on an Energy Recovery Linac ERL is a promising too...
MESA is a two pass energy recovery linac (ERL) currently under construction at the Johannes Gutenber...
The multipass, multibunch beam breakup (BBU) instability imposes a potentially severe limitation to ...
Recirculating linear accelerators (linacs) provide a compact and efficient way of accelerating parti...
The optics simulation group at HZB is designing a multi turn energy recovery linac based light sourc...
Energy recovering linac (ERL) offers an attractive alternative for generating intense beams of charg...
Cornell-ERL-06-1 The total current that can be accelerated in an Energy Recovery Linear Accelerator ...
Energy Recovery Linacs ERL have been discussed as drivers for synchrotron radiation facilities in ...
As the Jefferson Lab Free Electron Laser steadily approaches its goal of producing 1 kW of IR radiat...
ERL-06-04 The total current that can be accelerated in an Energy Recovery Linear Accelerator (ERL) c...
Generally, the Energy Recovery Linac (ERL) needs specially designed high current superconducting RF ...
Beam breakup (BBU) instabilities in superconducting linacs are a significant issue due to the potent...
Multi-pass, multi-bunch beam-breakup has been long known to be a potential limiting factor for the c...
Several possible scenarios of Energy Recovery Linac (ERL) beam optics design are investigated to sup...
Helmholtz Zentrum Berlin officially started Jan. 2011 the design and construction of the Berlin Ener...
A new generation of particle accelerators based on an Energy Recovery Linac ERL is a promising too...
MESA is a two pass energy recovery linac (ERL) currently under construction at the Johannes Gutenber...
The multipass, multibunch beam breakup (BBU) instability imposes a potentially severe limitation to ...
Recirculating linear accelerators (linacs) provide a compact and efficient way of accelerating parti...
The optics simulation group at HZB is designing a multi turn energy recovery linac based light sourc...
Energy recovering linac (ERL) offers an attractive alternative for generating intense beams of charg...
Cornell-ERL-06-1 The total current that can be accelerated in an Energy Recovery Linear Accelerator ...
Energy Recovery Linacs ERL have been discussed as drivers for synchrotron radiation facilities in ...
As the Jefferson Lab Free Electron Laser steadily approaches its goal of producing 1 kW of IR radiat...
ERL-06-04 The total current that can be accelerated in an Energy Recovery Linear Accelerator (ERL) c...
Generally, the Energy Recovery Linac (ERL) needs specially designed high current superconducting RF ...
Beam breakup (BBU) instabilities in superconducting linacs are a significant issue due to the potent...