Published August 2017 | Version v1
Miscellaneous

Struggle to suppress radio-activation due to multi-turn charge exchange beam injection with stripper foil and its issues

  • 1. Japan Atomic Energy Agency, J-PARC Center, Tokai, Ibaraki (Japan)

Description

It is key issue to reduce the level of the radio-activation of the devices in high power proton accelerator, to achieve MW class high power beam operation. The 3 GeV Rapid Cycling Synchrotron (RCS) of the Japan Proton Accelerator Research Complex (J-PARC) adopted a beam collimation system which aims to localize the beam loss at the collimators and to reduce the level of residual doses at the other devices. However, relatively high residual doses are detected in not only the beam collimator area but also a vicinity of the stripper foil. The results of previous work, measurements of the detailed residual dose distribution and simulations of the radio-activation by the PHITS, indicate that the high level residual dose around the stripper foil is caused by secondary particles due to nuclear reaction at the foil. In order to suppress the secondary particles from foil, we try hard to reduce the number of foil hitting particles during the beam injection period. As a result, the level of the radio-activation around the foil can be decreased. At the same time, new beam loss monitor to detect the secondary particles from the foil is developed. In this presentation, we report the secondary particles detections and estimations of number of the foil hitting particles. In addition, we discuss the reduction of the radio-activation. (author)

Part of:
Proceedings of the 14th annual meeting of Particle Accelerator Society of Japan

Additional details

Publishing Information

Imprint Title
Proceedings of the 14th annual meeting of Particle Accelerator Society of Japan
Imprint Pagination
[1427 p.]
Journal Page Range
p. 877-881

Conference

Title
14. annual meeting of Particle Accelerator Society of Japan
Acronym
PASJ2017
Dates
1-3 Aug 2017
Place
Sapporo, Hokkaido (Japan)

Optional Information

Notes
11 refs., 7 figs., 2 tabs.