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Journal Articles

The Design of the neutron total scattering spectrometer for hydrogenous materials at J-PARC-JSNS

Suzuya, Kentaro; Kameda, Yasuo*; Otomo, Toshiya*; Yoshida, Koji*; Ito, Keiji*; Fukunaga, Toshiharu*; Misawa, Masakatsu*

Journal of Neutron Research, 13(1-3), p.123 - 128, 2005/03

The design, performance, philosophy, lessons learned and advantages of the neutron total scattering spectrometer for hydrogenous materials, FAST, under consideration for the J-PARC-JSNS, are described. In particular, novel instrumentation concept such as the small fractional scattered neutron flight path, $$gamma$$= L$$_{2}$$/(L$$_{1}$$+L$$_{2}$$), where L$$_{1}$$ is the incident flight path, moderator to sample, L$$_{2}$$ is the scattered neutron flight path from sample to detector, is presented and their expected performance at the JSNS is considered.

Journal Articles

Structural studies of K$$_{2}$$O-B$$_{2}$$O$$_{3}$$ melts and glasses

Umesaki, Norimasa*; Kita, Y.*; Iida, T.*; Handa, K.*; Kohara, Shinji*; Suzuya, Kentaro; Fukunaga, Toshiharu*; Misawa, Masakatsu*

Physics and Chemistry of Glasses, 41(5), p.304 - 308, 2000/10

no abstracts in English

Journal Articles

Structure of M$$_{2}$$O-B$$_{2}$$O$$_{3}$$ (M: Na and K) glasses and melts by neutron diffraction

Handa, K.*; Kita, Y.*; Kohara, Shinji*; Suzuya, Kentaro; Fukunaga, Toshiharu*; Misawa, Masakatsu*; Iida, T.*; *; Umesaki, Norimasa*

Journal of Physics and Chemistry of Solids, 60(8-9), p.1465 - 1471, 1999/00

 Times Cited Count:16 Percentile:64.83(Chemistry, Multidisciplinary)

no abstracts in English

Oral presentation

Present status of NOVA; J-PARC neutron total diffractometer

Suzuya, Kentaro; Takata, Shinichi; Shamoto, Shinichi; Otomo, Toshiya*; Misawa, Masakatsu*; Kaneko, Naokatsu*; Oshita, Hidetoshi*

no journal, , 

Design concept of high-intensity total diffractometer of J-PARC is wide-Q range measurements with the highest neutron intensity by the pulsed neutron source. The resolution of the diffractometer is reasonable for crystalline materials and the diffractometer will cover very wide research fields in term nano structure and/or non-crystalline materials. Hydrogen absorption mechanism will be intensively investigated with the diffractometer.

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