Cavities loaded with magnetic ring cores are often used in synchrotrons if the desired operating frequency is in the lower megahertz range. The properties of such a cavity are strongly determined by the ring cores. However, other cavity components also have an important influence. During the design phase of such a cavity, full-wave simulations are not the first choice because computational modeling of parts like magnetic ring cores is complicated and because the influence of the ring core material data is often larger than that of the cavity geometry. In the past, these types of cavities have often been built without performing 3-D simulations. While standard acceleration cavities can be developed rather accurately by experienced designers,...
Magnetic cores suited for the RF cavities of JHF (Japanese Hadron Facility) synchrotrons have been s...
We have developed a cobalt-based amorphous core as a new magnetic-alloy(MA) core for the loaded RF c...
The first rf cavity for the J-PARC(Japan Proton Accel-erator Research Complex) 50GeV synchrotron has...
Barrier bucket systems are planned for the SIS100 Synchrotron (part of the future accelerator facili...
"RF cavities loaded with magnetic alloy (MA) or ferrite ring cores are used in synchrotrons and stor...
A barrier bucket scheme is a powerful technique to accumulate more particle in a synchrotron. An RF ...
The Iranian Light Source Facility is a fourth-generation low emittance synchrotron light source unde...
The APS storage ring cavity is a single cell semi-spherical structure patterned along the lines of t...
Computer simulation tools for RF cavity design have become a necessity in many laboratories around t...
Based on the measurements of the magnetic cores and R&D works, MA(Magnetic Alloy)-loaded cavity ...
PSpice models for the SIS100 barrier bucket cavity and the ESR barrier bucket cavity have been crea...
The experimental storage ring (ESR), operated at the GSI facility in Darmstadt, Germany, allows expe...
A RF acceleration system has been designed for the Joint Project for High-Intensity Proton Accelerat...
The purpose of this note is to describe the electrical and mechanical properites of particle acceler...
A compact proton synchrotron with a circumference of 11.9m is being developed for the medical radiot...
Magnetic cores suited for the RF cavities of JHF (Japanese Hadron Facility) synchrotrons have been s...
We have developed a cobalt-based amorphous core as a new magnetic-alloy(MA) core for the loaded RF c...
The first rf cavity for the J-PARC(Japan Proton Accel-erator Research Complex) 50GeV synchrotron has...
Barrier bucket systems are planned for the SIS100 Synchrotron (part of the future accelerator facili...
"RF cavities loaded with magnetic alloy (MA) or ferrite ring cores are used in synchrotrons and stor...
A barrier bucket scheme is a powerful technique to accumulate more particle in a synchrotron. An RF ...
The Iranian Light Source Facility is a fourth-generation low emittance synchrotron light source unde...
The APS storage ring cavity is a single cell semi-spherical structure patterned along the lines of t...
Computer simulation tools for RF cavity design have become a necessity in many laboratories around t...
Based on the measurements of the magnetic cores and R&D works, MA(Magnetic Alloy)-loaded cavity ...
PSpice models for the SIS100 barrier bucket cavity and the ESR barrier bucket cavity have been crea...
The experimental storage ring (ESR), operated at the GSI facility in Darmstadt, Germany, allows expe...
A RF acceleration system has been designed for the Joint Project for High-Intensity Proton Accelerat...
The purpose of this note is to describe the electrical and mechanical properites of particle acceler...
A compact proton synchrotron with a circumference of 11.9m is being developed for the medical radiot...
Magnetic cores suited for the RF cavities of JHF (Japanese Hadron Facility) synchrotrons have been s...
We have developed a cobalt-based amorphous core as a new magnetic-alloy(MA) core for the loaded RF c...
The first rf cavity for the J-PARC(Japan Proton Accel-erator Research Complex) 50GeV synchrotron has...