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  1. 原著論文

Complete compensation of criss-cross deflection in a negative ion accelerator by magnetic technique

https://repo.qst.go.jp/records/74658
https://repo.qst.go.jp/records/74658
28ea4358-b97a-4595-a356-583224a03238
Item type 学術雑誌論文 / Journal Article(1)
公開日 2019-03-11
タイトル
タイトル Complete compensation of criss-cross deflection in a negative ion accelerator by magnetic technique
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 Aprile, Daniele

× Aprile, Daniele

WEKO 873666

Aprile, Daniele

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Agostinetti, P.

× Agostinetti, P.

WEKO 873667

Agostinetti, P.

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Baltador, C.

× Baltador, C.

WEKO 873668

Baltador, C.

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Denizeau, S.

× Denizeau, S.

WEKO 873669

Denizeau, S.

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平塚, 淳一

× 平塚, 淳一

WEKO 873670

平塚, 淳一

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市川, 雅浩

× 市川, 雅浩

WEKO 873671

市川, 雅浩

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柏木, 美恵子

× 柏木, 美恵子

WEKO 873672

柏木, 美恵子

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小島, 有志

× 小島, 有志

WEKO 873673

小島, 有志

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Marconato, N.

× Marconato, N.

WEKO 873674

Marconato, N.

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Pimazzoni, A.

× Pimazzoni, A.

WEKO 873675

Pimazzoni, A.

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Sartori, E.

× Sartori, E.

WEKO 873676

Sartori, E.

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Serianni, G.

× Serianni, G.

WEKO 873677

Serianni, G.

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Veltri, P.

× Veltri, P.

WEKO 873678

Veltri, P.

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Yoshida, M.

× Yoshida, M.

WEKO 873679

Yoshida, M.

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Chitarin, G.

× Chitarin, G.

WEKO 873680

Chitarin, G.

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Hiratsuka, Junichi

× Hiratsuka, Junichi

WEKO 873681

en Hiratsuka, Junichi

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Ichikawa, Masahiro

× Ichikawa, Masahiro

WEKO 873682

en Ichikawa, Masahiro

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Kashiwagi, Mieko

× Kashiwagi, Mieko

WEKO 873683

en Kashiwagi, Mieko

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Kojima, Atsushi

× Kojima, Atsushi

WEKO 873684

en Kojima, Atsushi

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抄録
内容記述タイプ Abstract
内容記述 During 2016, a joint experimental campaign was carried out by QST and Consorzio RFX on the Negative Ion Test Stand (NITS) at the QST Naka Fusion Institute, Japan, with the purpose of validating some design solutions adopted in MITICA, which is the full-scale prototype of the ITER NBI, presently under construction at Consorzio RFX, Padova, Italy.
The main purpose of the campaign was to test a novel technique, for suppressing the beamlet criss-cross magnetic deflection. This new technique, involving a set of permanent magnets embedded in the Extraction Grid, named Asymmetric Deflection Compensation Magnets (ADCM), is potentially more performing and robust than the traditional electrostatic compensation methods.
The results of this first campaign confirmed the effectiveness of the new magnetic configuration in reducing the criss-cross magnetic deflection. Nonetheless, contrary to expectations, a complete deflection correction was not achieved. By analyzing in detail the results, we found indications that a physical process, taking place just upstream of the plasma grid, was giving an important contribution to the final deflection of the negative ion beam. This process appears to be related to the drift of negative ions inside the plasma source, in the presence of a magnetic field transverse to the extraction direction, and results in a non-uniform ion current density extracted at the meniscus.
Therefore, the numerical models adopted in the design were improved by including this previously disregarded effect, so as to obtain a much better matching with the experimental results. Based on the results of the first campaign, new permanent magnets were designed and installed on the Extraction Grid of NITS. A second QST-Consorzio RFX joint experimental campaign was then carried out in 2017, demonstrating the complete correction of the criss-cross deflection and confirming the validity of the novel magnetic configuration and of the hypothesis behind the new models.
This contribution presents the results of the second joint experimental campaign on NITS along with the overall data analysis of both campaigns, and the description of the improved models. A general picture is given of the relation among magnetic field, beam energy, meniscus non-uniformity and beamlet deflection, constituting a useful database for the design of future machines.
書誌情報 AIP Conference Proceedings

巻 2052, 号 070001, p. 1-8, 発行日 2018-12
出版者
出版者 AIP Publishing
DOI
識別子タイプ DOI
関連識別子 10.1063/1.5083781
関連サイト
識別子タイプ DOI
関連識別子 https://doi.org/10.1063/1.5083781
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