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Cross sections for nuclide production in proton- and deuteron-induced reactions on 93Nb measured using the inverse kinematics method

Authors :
Nakano Keita
Watanabe Yukinobu
Kawase Shoichiro
Wang He
Otsu Hideaki
Sakurai Hiroyoshi
Takeuchi Satoshi
Togano Yasuhiro
Nakamura Takashi
Maeda Yukie
Ahn Deuk Soon
Aikawa Masayuki
Araki Shouhei
Chen Sidong
Chiga Nobuyuki
Doornenbal Pieter
Fukuda Naoki
Ichihara Takashi
Isobe Tadaaki
Kawakami Shunsuke
Kin Tadahiro
Kondo Yosuke
Koyama Shunpei
Kubo Toshiyuki
Kubono Shigeru
Kurokawa Meiko
Makinaga Ayano
Matsushita Masafumi
Matsuzaki Teiichiro
Michimasa Shin'ichiro
Momiyama Satoru
Nagamine Shunsuke
Niikura Megumi
Ozaki Tomoyuki
Saito Atsumi
Saito Takeshi
Shiga Yoshiaki
Shikata Mizuki
Shimizu Yohei
Shimoura Susumu
Sumikama Toshiyuki
Söderström Pär-Anders
Suzuki Hiroshi
Takeda Hiroyuki
Taniuchi Ryo
Tsubota Jun'ichi
Watanabe Yasushi
Wimmer Kathrin
Yamamoto Tatsuya
Yoshida Koichi
Source :
EPJ Web of Conferences, Vol 146, p 11046 (2017)
Publication Year :
2017
Publisher :
EDP Sciences, 2017.

Abstract

Isotopic production cross sections were measured for proton- and deuteron-induced reactions on 93Nb by means of the inverse kinematics method at RIKEN Radioactive Isotope Beam Factory. The measured production cross sections of residual nuclei in the reaction 93Nb + p at 113 MeV/u were compared with previous data measured by the conventional activation method in the proton energy range between 46 and 249 MeV. The present inverse kinematics data of four reaction products (90Mo, 90Nb, 88Y, and 86Y) were in good agreement with the data of activation measurement. Also, the model calculations with PHITS describing the intra-nuclear cascade and evaporation processes generally well reproduced the measured isotopic production cross sections.

Subjects

Subjects :
Physics
QC1-999

Details

Language :
English
ISSN :
2100014X
Volume :
146
Database :
Directory of Open Access Journals
Journal :
EPJ Web of Conferences
Publication Type :
Academic Journal
Accession number :
edsdoj.5fdc0f4668f4afb8c8787fd80f1005c
Document Type :
article
Full Text :
https://doi.org/10.1051/epjconf/201714611046