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New energy-degrading beamline for in-flight RI beams, OEDO

Authors :
Seiya Hayakawa
H. Yamaguchi
Takashi Nakamura
N. Imai
Olga Beliuskina
Hiroyoshi Sakurai
Jongwon Hwang
Nobuyuki Chiga
Y. Yanagisawa
Yohei Shimizu
Yukinobu Watanabe
Shin'ichiro Michimasa
Masanori Dozono
Hideki Shimizu
Toshiyuki Sumikama
K. Chikaato
Masao Ohtake
P. Schrock
Y. X. Watanabe
Shuichi Ota
Kathrin Wimmer
Kentaro Yako
Koichi Yoshida
Maya Takechi
K. Kawata
H. Yoshida
S. Omika
N. Kitamura
H. Wang
Motonobu Takaki
Eiji Ideguchi
Chihiro Iwamoto
Liu Yang
Hiroshi Suzuki
Hiroyuki Takeda
Keita Nakano
Kazunari Yamada
K. Iribe
Hiroari Miyatake
Shoichiro Kawase
Hideaki Otsu
D. Nagae
Rieko Tsunoda
Kensuke Kusaka
X. Sun
Ryo Nakajima
Shoichiro Masuoka
Satoshi Takeuchi
D. S. Ahn
Takashi Teranishi
Masafumi Matsushita
Naoki Fukuda
Daisuke Suzuki
Susumu Shimoura
Source :
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 463:143-147
Publication Year :
2020
Publisher :
Elsevier BV, 2020.

Abstract

The Optimized Energy Degrading Optics (OEDO) beamline was constructed at RIBF to produce slowed-down, well-focused radioactive-isotope beams at 10–50 MeV/u, and began operation in June 2017. We examined the performance of the OEDO system by decelerating high-energy medium-mass radioactive ions. The main components of the OEDO beamline are two superconducting quadrupole triplet magnets and one radio-frequency deflector. This paper introduces the unique design of the ion optics of the beamline and describes the achieved performance of the beamline in the commissioning and following physics experiments. We will discuss the properties of energy-degraded beams produced by the OEDO beamline by comparison of simulations and the achieved performance.

Details

ISSN :
0168583X
Volume :
463
Database :
OpenAIRE
Journal :
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
Accession number :
edsair.doi...........17d4bdeb93fc13029bf3b740f46d6eda