In order to realize a precise dose distribution in heavy-ion cancer therapy, high beam stability is required for the accelerator complex. Owing to load fluctuation caused by the upper ring, which is one of the two rings in HIMAC, current dips of 5-10 Hz were observed in the power supply for the bending/quadrupole magnet of the other lower ring. The parameters of the beam stability, such as the spill variation, the beam position, and the size, were adversely affected by the current dips. In order to suppress these current dips, we developed a new feed-forward system in the magnet power supply. We verified the performance of the feed-forward system by measuring the suppression of the current dips. We also performed beamexperiments to measure ...
This report concerns technical investigations to mitigate beam current fluctuations on the 100 µs ti...
A cryocooler-cooled high-temperature superconducting magnet was constructed, and it was tested on th...
The carbon-ion beam is slowly extracted from the Heavy Ion Medical Accelerator in Chiba (HIMAC) sync...
Beam stability of the multiple-energy operation at HIMAC synchrotron was improved for the fast raste...
At the HIMAC synchrotron, we have carried out the tune survey with the lifetime measurement in order...
The power supplies for the main bending and quadrupole magnets of the Heavy-Ion Medical Accelerator ...
At the HIMAC synchrotron,a multiturn-injection was optimized in order to obtain the high intensity.t...
Electron-cooling experiments have been carried out at the HIMAC synchrotron in order to develop new ...
The National Institute of Radiological Sciences (NIRS) has performed carbon-ion radiotherapy on more...
AbstractIn scanned carbon-ion therapy, the narrow beam is desired to reduce damage to healthy tissue...
The high energy beam transport system consists of horizontal beam lines and vertical beam lines with...
Hadron beams delivered by normal conducting synchrotrons are highly attractive in various fundamenta...
A new type of beam chopper has been developed and installed at HIMAC (Heavy Ion Medical Accelerator ...
A fast three-dimensional scanning irradiation method is under development at the Heavy Ion Medical A...
Purpose: For conducting the treatments by scanning irradiation without the use of the energy absorbe...
This report concerns technical investigations to mitigate beam current fluctuations on the 100 µs ti...
A cryocooler-cooled high-temperature superconducting magnet was constructed, and it was tested on th...
The carbon-ion beam is slowly extracted from the Heavy Ion Medical Accelerator in Chiba (HIMAC) sync...
Beam stability of the multiple-energy operation at HIMAC synchrotron was improved for the fast raste...
At the HIMAC synchrotron, we have carried out the tune survey with the lifetime measurement in order...
The power supplies for the main bending and quadrupole magnets of the Heavy-Ion Medical Accelerator ...
At the HIMAC synchrotron,a multiturn-injection was optimized in order to obtain the high intensity.t...
Electron-cooling experiments have been carried out at the HIMAC synchrotron in order to develop new ...
The National Institute of Radiological Sciences (NIRS) has performed carbon-ion radiotherapy on more...
AbstractIn scanned carbon-ion therapy, the narrow beam is desired to reduce damage to healthy tissue...
The high energy beam transport system consists of horizontal beam lines and vertical beam lines with...
Hadron beams delivered by normal conducting synchrotrons are highly attractive in various fundamenta...
A new type of beam chopper has been developed and installed at HIMAC (Heavy Ion Medical Accelerator ...
A fast three-dimensional scanning irradiation method is under development at the Heavy Ion Medical A...
Purpose: For conducting the treatments by scanning irradiation without the use of the energy absorbe...
This report concerns technical investigations to mitigate beam current fluctuations on the 100 µs ti...
A cryocooler-cooled high-temperature superconducting magnet was constructed, and it was tested on th...
The carbon-ion beam is slowly extracted from the Heavy Ion Medical Accelerator in Chiba (HIMAC) sync...