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論文

Developments of in-situ SEOP polarized $$^{3}$$He neutron spin filter in Japan

吉良 弘; 坂口 佳史; 奥 隆之; 鈴木 淳市; 中村 充孝; 新井 正敏; 遠藤 康夫; Chang, L.-J.; 加倉井 和久; 有本 靖*; et al.

Journal of Physics; Conference Series, 294, p.012014_1 - 012014_5, 2011/06

 被引用回数:11 パーセンタイル:94.49(Physics, Applied)

The pulsed neutron source of J-PARC has started to operate in 2008 in Japan. To study structure of magnetic material and soft matters, polarized neutron scattering techniques are very important and powerful tools. It is urgently necessary for us to develop neutron spin polarizers for pulsed neutron scattering experiments. So we began the development of the in-situ SEOP system aiming to use it as a NSF for incident beam polarization and polarization analysis. In previous test performed by Ino et al., the $$^{3}$$He polarization reached 50% and not saturated yet. After that experiment, we began improving the SEOP system by installing the high power laser diode, the prism beam splitter and optimizing the beam-transform optics. By using this improved system, we performed the polarization test at BL10 in J-PRC and achieved the $$^{3}$$He polarization of 73%. We keep improving this in-situ SEOP system aiming to use it s an incident neutron polarizer at J-PARC.

論文

Applications of $$^{3}$$He neutron spin filters on the small-angle neutron scattering spectrometer SANS-J-II

坂口 佳史; 吉良 弘; 奥 隆之; 篠原 武尚; 鈴木 淳市; 酒井 健二; 中村 充孝; 相澤 一也; 新井 正敏; 能田 洋平; et al.

Journal of Physics; Conference Series, 294(1), p.012017_1 - 012017_7, 2011/06

 被引用回数:2 パーセンタイル:65.41(Physics, Applied)

A polarized $$^{3}$$He neutron spin filter has been applied to polarization analysis on the small-angle neutron scattering spectrometer SANS-J-II at JRR-3. Measurements were taken on silver behenate, which has several coherent peaks in the small-angle region with a background of spin incoherent hydrogen scattering. Here we demonstrate that the coherent and spin incoherent scattering were successfully separated by the polarization analysis using the $$^{3}$$He spin filter on the instrument.

論文

Structure of glasses for $$^{3}$$He neutron spin filter cells

坂口 佳史; 吉良 弘; 奥 隆之; 篠原 武尚; 鈴木 淳市; 酒井 健二; 中村 充孝; 鈴谷 賢太郎; 相澤 一也; 新井 正敏; et al.

Journal of Physics; Conference Series, 294(1), p.012004_1 - 012004_7, 2011/06

 被引用回数:2 パーセンタイル:65.41(Physics, Applied)

In spin-exchange optical pumping, there is unknown excess relaxation, called the X-factor, that limits attainable $$^{3}$$He polarization. It is known that the X-factor depends on the glass containers. Hence, it is expected that there are cell-to-cell variations in microscopic structure among the cells and that these variations affect the attainable $$^{3}$$He polarization. However, microscopic structure of the glasses for $$^{3}$$He neutron spin filters has not been clarified yet. In this paper, we have performed precise X-ray diffraction measurements for the glasses at SPring-8 using synchrotron radiation. The structural differences are observed between several types of glasses, and also, between the GE180 glass pieces with different thermal treatment. Based on the results, the structural influence on the performance of $$^{3}$$He neutron spin filters is discussed.

口頭

Japan-Taiwan joint development project for polarized $$^{3}$$He

Chang, L.-J.; 奥 隆之; 吉良 弘; 坂口 佳史; 酒井 健二; 篠原 武尚; 鈴木 淳市; 中村 充孝; 新井 正敏; 武田 全康; et al.

no journal, , 

The joint development project for polarized $$^{3}$$He between JAEA, KEK, Tohoku University, Japan and NTHU, Taiwan has been processing since 2009. The applications of polarized $$^{3}$$He in Japan focus on the studies of various neutron spin filters for both neutron facilities, the reactor neutron source JRR-3 and spallation neutron source J-PARC. The overviews and perspectives of the project will be presented in the workshop.

口頭

Current status and perspective of neutron polarizing device development and application in neutron scattering experiments in Japan

奥 隆之; 吉良 弘; 坂口 佳史; 酒井 健二; 鈴木 淳市; 中村 充孝; 篠原 武尚; 小泉 智; 高田 慎一; 相澤 一也; et al.

no journal, , 

J-PARCの物質・生命科学実験施設は、2008年12月に一般ユーザーに向けて中性子ビーム利用実験をスタートさせた。パルス中性子源の線源出力は徐々に上昇し、現在120kWに達しており、また、線源出力の上昇とともに、ユーザーの課題数も増加している。この状況下、2008年度より5か年計画で中性子ビーム利用高度化技術開発プロジェクトがスタートした。本プロジェクトには、国内の6研究機関が参画し、中性子偏極,集光,イメージング技術の開発を行う。会議では、国内における中性子ビーム利用高度化技術開発の現状と今後の展望について紹介する。

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