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  1. 原著論文

Alternating-phase-focused IH-DTL for an injector of heavy-ion medical accelerators

https://repo.qst.go.jp/records/44743
https://repo.qst.go.jp/records/44743
e822b556-d246-4de6-a8c5-f042e916f33a
Item type 学術雑誌論文 / Journal Article(1)
公開日 2006-12-15
タイトル
タイトル Alternating-phase-focused IH-DTL for an injector of heavy-ion medical accelerators
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ journal article
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 Iwata, Yoshiyuki

× Iwata, Yoshiyuki

WEKO 444216

Iwata, Yoshiyuki

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Yamada, Satoru

× Yamada, Satoru

WEKO 444217

Yamada, Satoru

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Murakami, Takeshi

× Murakami, Takeshi

WEKO 444218

Murakami, Takeshi

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Fujimoto, Tetsuya

× Fujimoto, Tetsuya

WEKO 444219

Fujimoto, Tetsuya

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Fujisawa, Takashi

× Fujisawa, Takashi

WEKO 444220

Fujisawa, Takashi

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Ogawa, Hiroyuki

× Ogawa, Hiroyuki

WEKO 444221

Ogawa, Hiroyuki

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Miyahara, Nobuyuki

× Miyahara, Nobuyuki

WEKO 444222

Miyahara, Nobuyuki

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Yamamoto, Kazuo

× Yamamoto, Kazuo

WEKO 444223

Yamamoto, Kazuo

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Houjou, Satoru

× Houjou, Satoru

WEKO 444224

Houjou, Satoru

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Sakamoto, Yukio

× Sakamoto, Yukio

WEKO 444225

Sakamoto, Yukio

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Muramatsu, Masayuki

× Muramatsu, Masayuki

WEKO 444226

Muramatsu, Masayuki

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et.al

× et.al

WEKO 444227

et.al

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岩田 佳之

× 岩田 佳之

WEKO 444228

en 岩田 佳之

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山田 聰

× 山田 聰

WEKO 444229

en 山田 聰

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村上 健

× 村上 健

WEKO 444230

en 村上 健

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藤澤 高志

× 藤澤 高志

WEKO 444231

en 藤澤 高志

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宮原 信幸

× 宮原 信幸

WEKO 444232

en 宮原 信幸

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山本 和男

× 山本 和男

WEKO 444233

en 山本 和男

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北條 悟

× 北條 悟

WEKO 444234

en 北條 悟

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坂本 幸雄

× 坂本 幸雄

WEKO 444235

en 坂本 幸雄

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村松 正幸

× 村松 正幸

WEKO 444236

en 村松 正幸

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抄録
内容記述タイプ Abstract
内容記述 A compact Drift-Tube-Linac (DTL) using an Interdigital H-mode (IH) cavity was designed for an injector of medical accelerators. For beam focusing, the method of Alternating-Phase-Focusing (APF) was applied. The APF IH-DTL can accelerate heavy ions having acharge-to-mass ratio of q=m . 1 3 up to 4:0MeV=u. Having optimized an array of synchronous phases for cells, namely arranging drift tubes and gaps appropriately, both longitudinal and transverse focusing strengths were produced just with the rf acceleration field, and therefore no focusing element or cooling equipments had to be installed in the cavity. This allowed us to employ a rather high operating frequency, and hence to design a compact and cost-effective cavity. A further advantage of the APF linac can be found in its operation.
Since the parameters to be adjusted are just the level and phase of the input rf, beam tuning can be made with ease. Consequently, the APF linac is suitable for an injector for medical accelerators. Tuning methods of the gap voltages and cavity frequency as well as the design of the cavity for APF IH-DTL have been developed. After constructing the cavity, measurements of the electric field and tuning of the gap voltages were performed. Finally, the rf power was fed into the cavity. In this paper, the design and results of the measurements are described.
書誌情報 Nuclear Instruments & Methods in Physics Research Section A

巻 569, 号 3, p. 685-696, 発行日 2006-12
ISSN
収録物識別子タイプ ISSN
収録物識別子 0168-9002
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