Superconducting cavities presently used for acceleration of ions in velocity range ∼0.01c to 0.3c (where c is the speed of light) are based on quarter-wave resonators. Currently there are several design proposals in nuclear physics laboratories for application of this type of cavity for acceleration of light and heavy ions. The operating frequencies of the cavities range from ∼50 to 360 MHz to satisfy various specifications. Electrodynamics studies of the field distributions in the beam-cavity interaction area indicate appreciable dipole components of both electric and magnetic fields, especially for higher-frequency cavities. The dipole fields induce beam steering, which is a strong function of rf phase and which couples the longitudinal a...
RF cavities are the driving technology behind most of modern particle accelerators. The diverse use ...
Two niobium resonant cavities for high-brightness ion beam acceleration have been constructed and te...
2 MULTI-CHARGE BEAM DYNAMICS The Rare Isotope Accelerator (RIA) driver linac design is being studied...
Superconducting (SC) cavities presently used for acceleration of ions in the velocity range from 0.0...
Beam steering in superconducting quarter-wave resonators (QWRs), which is mainly caused by magnetic ...
Superconducting quarter-wave resonators, due to their compactness and their convenient shape for tun...
The superconducting (SC) cavities currently used for the acceleration of protons at a low velocity r...
Super-conducting linear accelerator as injector for COSY has to accelerate-D and H − particles that...
We have built a 161 MHz, b=0.16 superconducting Quarter Wave Resonator with steering correction for ...
The superconducting upgrade of the REX-ISOLDE radioactive ion beam (RIB) post-accelerator at CERN wi...
A superconducting linear accelerator based on niobium quarter wave resonators has recently become op...
The HIE-ISOLDE project at CERN proposes a superconducting upgrade to increase the energy range and q...
Theoretical study of an alternate phase focusing (APF) structure, realized in a long chain of double...
We report the possible improvements of accelerating RF cavities for COSY proton-deuteron SC Linac [1...
A superconducting linac for re-acceleration of exotic ions is under development at Michigan State Un...
RF cavities are the driving technology behind most of modern particle accelerators. The diverse use ...
Two niobium resonant cavities for high-brightness ion beam acceleration have been constructed and te...
2 MULTI-CHARGE BEAM DYNAMICS The Rare Isotope Accelerator (RIA) driver linac design is being studied...
Superconducting (SC) cavities presently used for acceleration of ions in the velocity range from 0.0...
Beam steering in superconducting quarter-wave resonators (QWRs), which is mainly caused by magnetic ...
Superconducting quarter-wave resonators, due to their compactness and their convenient shape for tun...
The superconducting (SC) cavities currently used for the acceleration of protons at a low velocity r...
Super-conducting linear accelerator as injector for COSY has to accelerate-D and H − particles that...
We have built a 161 MHz, b=0.16 superconducting Quarter Wave Resonator with steering correction for ...
The superconducting upgrade of the REX-ISOLDE radioactive ion beam (RIB) post-accelerator at CERN wi...
A superconducting linear accelerator based on niobium quarter wave resonators has recently become op...
The HIE-ISOLDE project at CERN proposes a superconducting upgrade to increase the energy range and q...
Theoretical study of an alternate phase focusing (APF) structure, realized in a long chain of double...
We report the possible improvements of accelerating RF cavities for COSY proton-deuteron SC Linac [1...
A superconducting linac for re-acceleration of exotic ions is under development at Michigan State Un...
RF cavities are the driving technology behind most of modern particle accelerators. The diverse use ...
Two niobium resonant cavities for high-brightness ion beam acceleration have been constructed and te...
2 MULTI-CHARGE BEAM DYNAMICS The Rare Isotope Accelerator (RIA) driver linac design is being studied...