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自動サイクロトロン共鳴加速法を用いた陽子加速器の概念設計

https://repo.qst.go.jp/records/82615
https://repo.qst.go.jp/records/82615
68a73be6-1d2c-4afd-966a-0d63f1252058
Item type 会議発表論文 / Conference Paper(1)
公開日 2021-04-02
タイトル
タイトル 自動サイクロトロン共鳴加速法を用いた陽子加速器の概念設計
言語
言語 jpn
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_5794
資源タイプ conference paper
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
著者 原, 隆文

× 原, 隆文

WEKO 943971

原, 隆文

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福田, 光宏

× 福田, 光宏

WEKO 943972

福田, 光宏

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神田, 浩樹

× 神田, 浩樹

WEKO 943973

神田, 浩樹

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依田, 哲彦

× 依田, 哲彦

WEKO 943974

依田, 哲彦

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中尾, 政夫

× 中尾, 政夫

WEKO 943975

中尾, 政夫

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安田, 裕介

× 安田, 裕介

WEKO 943976

安田, 裕介

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篠塚, 勉

× 篠塚, 勉

WEKO 943977

篠塚, 勉

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伊藤, 正俊

× 伊藤, 正俊

WEKO 943978

伊藤, 正俊

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松田, 洋平

× 松田, 洋平

WEKO 943979

松田, 洋平

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倉島, 俊

× 倉島, 俊

WEKO 943980

倉島, 俊

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宮脇, 信正

× 宮脇, 信正

WEKO 943981

宮脇, 信正

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涌井, 崇志

× 涌井, 崇志

WEKO 943982

涌井, 崇志

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Mitsuhiro, Fukuda

× Mitsuhiro, Fukuda

WEKO 943983

en Mitsuhiro, Fukuda

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Satoshi, Kurashima

× Satoshi, Kurashima

WEKO 943984

en Satoshi, Kurashima

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Nobumasa, Miyawaki

× Nobumasa, Miyawaki

WEKO 943985

en Nobumasa, Miyawaki

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Takashi, Wakui

× Takashi, Wakui

WEKO 943986

en Takashi, Wakui

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抄録
内容記述タイプ Abstract
内容記述 In recent years, an accelerator-based neutron source that replaces a nuclear reactor is being developed, and it is required
to further increase the intensity of the accelerator. The automatic cyclotron resonance acceleration method is one of the
acceleration methods that has succeeded in accelerating high-intensity electrons of 20 A with low energy up to about 2
MeV. The automatic cyclotron resonance acceleration method is a method in which an electric field rotating at the same
angular velocity as a charged particle rotating in a magnetic field is generated and the charged particle is always
accelerated in the same direction as the rotating direction. We apply the cyclotron auto-resonance acceleration to protons
and aim to develop a proton accelerator that accelerates high-current protons to several tens MeV. Since the cyclotron
resonance frequency is proportional to the magnetic flux density and inversely proportional to the mass of the particle,
generation of a strong magnetic field is the key to realizing a cyclotron resonance accelerator for a proton with a mass of
2000 times that of an electron. A coil system using a high temperature superconducting wire and a resonant cavity for
high frequency TE111 mode were designed by finite element electromagnetic field analysis using OPERA-3D to design
an electromagnetic field with a static magnetic field of 8 T and circularly polarized light of 121 MHz. went. Furthermore,
the behavior of the proton beam in this static magnetic field and electromagnetic field was calculated by OPAL, and the
proton acceleration up to 30 MeV was confirmed. It was also shown that the charge contained in the proton bunch can be
increased and the beam can be accelerated with a sufficiently small lateral spread even for a beam equivalent to 100 mA.
In this presentation, we will present the calculation of magnetic field and resonant cavity, and the calculation result of
proton orbit in the electromagnetic field.
書誌情報 2020年第17回日本加速器学会年会プロシーディング

p. 43-45, 発行日 2020-10
関連サイト
識別子タイプ URI
関連識別子 https://www.pasj.jp/web_publish/pasj2020/proceedings/PDF/WEOT/WEOT04.pdf
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