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Dive into the research topics where Takayuki Oku is active.

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Featured researches published by Takayuki Oku.


Journal of Applied Crystallography | 2007

Focusing and polarized neutron small-angle scattering spectrometer (SANS-J-II). The challenge of observation over length scales from an ångström to a micrometre

Satoshi Koizumi; Hiroki Iwase; Jun-ichi Suzuki; Takayuki Oku; Ryuhei Motokawa; Hajime Sasao; Hirokazu Tanaka; Daisuke Yamaguchi; Hirohiko M. Shimizu; Takeji Hashimoto

SANS-J (a pinhole small-angle neutron scattering spectrometer at research reactor JRR3, Tokai, Japan) was reconstructed as a focusing and polarized neutron small-angle scattering spectrometer (SANS-J-II). By employing focusing lenses of a biconcave MgF2 crystal or of a sextupole permanent magnet and a high-resolution photomultiplier, the minimum accessible magnitude of the scattering vector qmin was improved from 3 × 10−3 A−1 to an ultra-small-angle scattering (USAS) of 3 × 10−4 A−1. Compared with a Bonse–Hart double-crystal method, the advantages of focusing USAS are the efficient detection of anisotropic USAS with an area detector, an improvement in q resolution Δq/q at conventional magnitudes of the scattering vector q ~ 10−3 A−1 and a gain in neutron flux in the conventional q region of q ~ 10−3 A−1.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1999

Measurement of cold neutron-beam focusing effect of a permanent sextupole magnet

Hirohiko M. Shimizu; Yoshiyuki Suda; Takayuki Oku; Haruko Nakagawa; Hiroshi Kato; Takashi Kamiyama; Chiko Otani; Hiromi Sato; Toshio Wakabayashi; Yoshiaki Kiyanagi

Abstract The magnetic focus effect of cold neutron beam was measured using a permanent sextupole magnet and a gain of more than 35 was observed. The result was analyzed with a numerical simulation.


Journal of Applied Crystallography | 2003

Cold neutron beam focusing by a superconducting sextupole magnet

Jun-ichi Suzuki; Takayuki Oku; Tomohiro Adachi; Hirohiko M. Shimizu; Tamiko Hirumachi; T. Tsuchihashi; Ikuo Watanabe

We have developed a superconducting sextupole magnet with about 50 mm in bore diameter to focus cold neutron beams with large cross-section and have investigated its focusing and polarizing effect. Large gain in neutron intensity and high neutron polarization have been obtained by numerical simulation for highly collimated neutron beams. We discuss applications of this magnet for small-angle neutron scattering experiments.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2002

Development of scintillation imaging device for cold neutrons

Alexander M. Gorin; K. Kuroda; Igor Manuilov; Takayuki Oku; Andrei Ryazantsev; Hirohiko M. Shimizu; Jun-ichi Suzuki; Fuyuki Tokanai

Abstract As an application of the wavelength-shifting (WLS) fiber technique recently developed in the field of high-energy physics, a novel type of imaging device for neutrons has been successfully investigated; a space resolution of 1 mm FWHM with detection efficiency of 55% for 10 A neutrons has been experimentally confirmed with a prototype made of a 0.5-mm-thick ZnS(Ag)+6LiF scintillator plate optically coupled to WLS fiber arrays. In addition to promising results obtained in this study, its simple structure and reliable operation allow us to foresee a new generation of imaging devices to meet the increasing demand for large-area and high space-resolution imaging devices for several new projects on spallation neutron sources in the world.


Japanese Journal of Applied Physics | 2000

Improved Fabrication Method for Nb/Al/AlOx/Al/Nb Superconducting Tunnel Junctions as X-Ray Detectors

Hiromi Sato; Yoshiyuki Takizawa; W. Ootani; Tokihiro Ikeda; Takayuki Oku; Chiko Otani; Hiroshi Watanabe; Kazuhiko Kawai; Hiromasa Miyasaka; Hiroshi Kato; Hirohiko M. Shimizu; Hiroshi Nakagawa; Hiroshi Akoh; Masahiro Aoyagi; Tohru Taino

Niobium-based superconducting tunnel junctions (STJs) with aluminum trapping layers as X-ray detectors were fabricated. We applied a fabrication technique for reducing the leakage current and improving the energy resolution for X-rays at around 6 keV. The edges of two Al layers sandwiching a tunneling barrier were oxidized by plasma discharge. The performance of these new STJs was compared with other types of STJs to which thermal oxidization in an O2 atmosphere had been applied. The oxidization process in O2 plasma significantly improved the energy resolution for X-rays, which reached values (FWHM) of 41 eV, 58 eV, 65 eV, and 129 eV for STJs with the size of 20×20 µm2, 100×100 µm2, 200×200 µm2, and 500×500 µm2, respectively.


Journal of Applied Crystallography | 2007

A focusing-geometry small-angle neutron scattering instrument with a magnetic neutron lens

Takayuki Oku; Hiroki Iwase; Takenao Shinohara; Satoru Yamada; Katsuya Hirota; Satoshi Koizumi; Jun-ichi Suzuki; Takeji Hashimoto; Hirohiko M. Shimizu

We have constructed a focusing-geometry small-angle neutron scattering (FSANS) instrument, SANS-J-II, with two kinds of neutron focusing device: a series of compound refractive lenses made of MgF2 and a magnetic neutron lens based on an extended Halbach-type sextupole magnet. In this study, we investigated the performance of the FSANS instrument with the magnetic neutron lens. The intensity distribution of a direct neutron beam focused on the detector plane by the magnetic neutron lens had a ratio of the peak height to the background level of \sim\!6\times 10^4 for a polarized neutron beam with a polarization degree of \sim \!0.99. It is found that a minimum value of the measurable q range [where q is the modulus of the scattering vector and is defined as q = (4\pi/\lambda)\sin(\theta/2), where \theta is the scattering angle and \lambda is the neutron wavelength], q_{\rm min}, of 6.5 \times 10^{-4} A−1 can be achieved by the FSANS instrument with the magnetic neutron lens using neutrons with \lambda = 6.6 A and \Delta \lambda/\lambda = 0.13 for the full width at half maximum.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2000

Cold neutron imaging detection with a GSO scintillator

Fuyuki Tokanai; Takayuki Oku; Takashi Ino; Jun-ichi Suzuki; Tokihiro Ikeda; W. Ootani; Chiko Otani; Hiromi Sato; Hirohiko M. Shimizu; Yoshiaki Kiyanagi; Tomoaki Hirota

Abstract The pulse-height spectrum and two-dimensional image of a 0.5 mm thick GSO scintillator were investigated for a 6 A cold neutron beam. The 31 and 81 keV peaks resulting from neutron absorption by Gd nuclei were identified in the pulse-height spectrum by using a photomultiplier tube. Images of 1.5 and 2.1 mm (FWHM) in diameter were observed for 1 and 2 mm diameter incident beams with an image intensifier and viewed by a CCD camera, corresponding to a position resolution of 1.3 mm (FWHM). The result implies that a position resolution of better than 100 μm would be achievable by employing a GSO scintillator thinner than 20 μm .


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2001

Development of a Fresnel lens for cold neutrons based on neutron refractive optics

Takayuki Oku; S. Morita; S. Moriyasu; Yutaka Yamagata; H. Ohmori; Yoshiyuki Takizawa; Hirohiko M. Shimizu; T. Hirota; Y. Kiyanagi; T. Ino; Michihiro Furusaka; Jun-ichi Suzuki

Abstract We have developed compound refractive lenses (CRLs) for cold neutrons, which are made of vitreous silica and have an effective potential of (90.1– 2.7×10 −4 i ) neV . In the case of compound refractive optics, neutron absorption by the material deteriorates lens performance. Thus, to prevent an increase in neutron absorption with increasing beam size, we have developed Fresnel lenses using the electrolytic in-process dressing grinding technique. The lens characteristics were carefully investigated with experimental and numerical simulation studies. The lenses functioned as a neutron focusing lens, and the focal length of 14 m was obtained with a 44-element series of the Fresnel lenses for 10 A neutrons. Moreover, good neutron transmission of 0.65 for 15 A neutrons was obtained due to the shape effect. According to comprehensive analysis of the obtained results, it is possible to realize a CRL for practical use by choosing a suitable lens shape and material.


Proceedings of the 2nd International Symposium on Science at J-PARC — Unlocking the Mysteries of Life, Matter and the Universe — | 2015

The Design and q Resolution of the Small and Wide Angle Neutron Scattering Instrument (TAIKAN) in J-PARC

Shin-ichi Takata; J. Suzuki; Takenao Shinohara; Takayuki Oku; Taiki Tominaga; Kazuki Ohishi; Hiroki Iwase; Takeshi Nakatani; Yasuhiro Inamura; Takayoshi Ito; Kentaro Suzuya; Kazuya Aizawa; Masatoshi Arai; Toshiya Otomo; Masaaki Sugiyama

J-PARC Center, Japan Atomic Energy Agency (JAEA), Tokai, Ibaraki 319-1195, Japan Research Center for Neutron Science and Technology, Comprehensive Research Organization for Science and Society (CROSS), Tokai, Ibaraki 319-1106, Japan J-PARC Center, High Energy Accelerator Research Organization (KEK), Tsukuba, Ibaraki 305-0801, Japan Research Reactor Institute, Kyoto University (KURRI), Kumatori, Osaka 590-0494, Japan


Journal of Applied Crystallography | 2003

Development of a high-resolution scintillator-based area detector for neutrons

N Sakamoto; Yoshiaki Kiyanagi; Setsuo Sato; H. Sagehashi; Michihiro Furusaka; Jun-ichi Suzuki; Kenneth C. Littrell; C.-K. Loong; A. Gorin; I. Manuilov; A. Ryazantsev; K. Kuroda; K. Sakai; F. Tokanai; Tomohiro Adachi; Takayuki Oku; K. Ikeda; H. Miyasaka; Suguru Suzuki; K. Morimoto; Hirohiko M. Shimizu

We applied a scintillator-based area detector to the neutron time-of-flight method by developing a new electronics system for this detector, which detector consists of a thin plate of ZnS(Ag)+6Li scintillator optically coupled to wavelength shifter. The spatial resolution was about 0.4 mm which is consistent with a fiber width of 0.4 mm. The detection efficiency for thermal neutrons was about 6%. A good-resolution radiographic-image as a function of flight time was obtained.

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Hirohiko M. Shimizu

Japan Atomic Energy Research Institute

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Jun-ichi Suzuki

Japan Atomic Energy Agency

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Takenao Shinohara

Japan Atomic Energy Agency

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Masatoshi Arai

Japan Atomic Energy Agency

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Hiroshi Kira

Japan Atomic Energy Agency

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Kenji Sakai

Japan Atomic Energy Agency

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Masahide Harada

Japan Atomic Energy Agency

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