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  1. 原著論文

Application of the Medipix2 technology to space radiation dosimetry and hadron therapy beam monitoring

https://repo.qst.go.jp/records/46240
https://repo.qst.go.jp/records/46240
db8229a0-b8e2-4068-ada6-e6e8c84a9ff0
Item type 学術雑誌論文 / Journal Article(1)
公開日 2011-12-27
タイトル
タイトル Application of the Medipix2 technology to space radiation dosimetry and hadron therapy beam monitoring
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 Pinsky, L.

× Pinsky, L.

WEKO 460468

Pinsky, L.

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Stoffle, Nicholas

× Stoffle, Nicholas

WEKO 460469

Stoffle, Nicholas

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Empl, Anton

× Empl, Anton

WEKO 460470

Empl, Anton

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Jakubek, J

× Jakubek, J

WEKO 460471

Jakubek, J

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Pospisil, Stanislav

× Pospisil, Stanislav

WEKO 460472

Pospisil, Stanislav

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Leroy, Claude

× Leroy, Claude

WEKO 460473

Leroy, Claude

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Kitamura, Hisashi

× Kitamura, Hisashi

WEKO 460474

Kitamura, Hisashi

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Yasuda, Nakahiro

× Yasuda, Nakahiro

WEKO 460475

Yasuda, Nakahiro

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Uchihori, Yukio

× Uchihori, Yukio

WEKO 460476

Uchihori, Yukio

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Stoffle Nicholas

× Stoffle Nicholas

WEKO 460477

en Stoffle Nicholas

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北村 尚

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WEKO 460478

en 北村 尚

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安田 仲宏

× 安田 仲宏

WEKO 460479

en 安田 仲宏

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内堀 幸夫

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WEKO 460480

en 内堀 幸夫

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抄録
内容記述タイプ Abstract
内容記述 The Medipix2 Collaboration, based at CERN, has developed the TimePix version of the Medipix pixel readout chip, which has the ability to provide either an ADC or TDC capability separately in each of its 256 x 256 pixels. When coupled to a Si detector layer, the device is an excellent candidate for application as an active dosimeter for use in Space Radiation Environments. In order to facilitate such a development, data have been taken with Heavy Ions at the HIMAC facility in Chiba, Japan. In particular, the problem of determining the resolution of such a detector system with respect to heavy ions of differing charges and energies, but with similar dE/dx values has been explored for several ions. The ultimate problem is to parse the information in the pixel "footprint" images from the drift of the charge-cloud produced in the detector layer. In addition, with the use of convertor materials, the detector can be used as a neutron detector, and it has been used both as a charged particle and neutron detector to evaluate the detailed properties of the radiation fields produced by hadron therapy beams. The first space flight of a Medipix-based detector is currently planned for the first quarter of 2012 onboard the UK TechDemoSat-1 satellite as part of the LUCID project. The instrument to be flown is currently planned to have 5 TimePix versions of the Medipix2 detector deployed on 5 of the 6 faces of a cube with ∼3 cm on each side and enclosed by a 0.7 mm thick Al cylindrical cover. The planned orbit will have an altitude of 660 km and will be sun-synchronous with an inclination of 98° Current plans are for the instrument to be located on a vertical side of the satellite with one face upward, one downward, two opposed laterally and one facing in the forward direction with respect to the satellite's velocity vector. As such, the instrument should be exposed to the outer belt electrons during polar passes as well as the South Atlantic Anomaly and ambient Galactic Cosmic Rays in addition to albedos from the atmosphere throughout its orbit. New versions of the basic chip design are ongoing.
書誌情報 Radiation Measurements

巻 46, 号 12, p. 1610-1614, 発行日 2011-09
ISSN
収録物識別子タイプ ISSN
収録物識別子 1350-4487
DOI
識別子タイプ DOI
関連識別子 10.1016/j.radmeas.2011.08.026
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