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Journal Articles

Strange pentaquarks with a hidden heavy quark-antiquark pair

Takeuchi, Sachiko*; Giachino, A.*; Takizawa, Makoto*; Santopinto, E.*; Oka, Makoto

Hadron Spectroscopy and Structure; Proceedings of the 18th International Conference (HADRON 2019), p.333 - 337, 2020/08

Pentaquarks with $$c bar{c}$$ or $$b bar{b}$$ heavy quarks are very much interesting. We analyze the strange pentaquark with $$c bar{c}$$ or $$b bar{b}$$ in the coupled-channel quark cluster model. We find bound, resonance and cusp like states.

Journal Articles

SENJU; A New time-of-flight single-crystal neutron diffractometer at J-PARC

Ohara, Takashi; Kiyanagi, Ryoji; Oikawa, Kenichi; Kaneko, Koji; Kawasaki, Takuro; Tamura, Itaru; Nakao, Akiko*; Hanashima, Takayasu*; Munakata, Koji*; Moyoshi, Taketo*; et al.

Journal of Applied Crystallography, 49(1), p.120 - 127, 2016/02

 Times Cited Count:45 Percentile:95.79(Chemistry, Multidisciplinary)

JAEA Reports

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PNC TJ1639 97-001, 40 Pages, 1997/03

PNC-TJ1639-97-001.pdf:1.42MB

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JAEA Reports

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PNC TJ1639 96-001, 52 Pages, 1996/03

PNC-TJ1639-96-001.pdf:1.06MB

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Oral presentation

Development of a new TOF single crystal diffractometer SENJU at J-PARC

Ohara, Takashi; Kiyanagi, Ryoji; Kawasaki, Takuro; Oikawa, Kenichi; Kaneko, Koji; Tamura, Itaru; Nakao, Akiko*; Hanashima, Takayasu*; Munakata, Koji*; Kimura, Hiroyuki*; et al.

no journal, , 

SENJU is a new single crystal time-of-flight neutron diffractometer installed at BL18 of J-PARC. SENJU is designed for precise crystal and magnetic structure analyses under multiple extreme environments such as low-temperature, high-pressure and high-magnetic field, and also designed for diffraction measurements of small single crystals less than 1.0 mm$$^{3}$$ in volume. We have successfully achieved structure analysis of a laboratory X-ray size (0.1 mm$$^{3}$$) single organic crystal, measurement and visualization of a complex-shape diffuse scattering pattern and measurement of higher order magnetic reflections in high-Q region (Q$$>$$16${AA}$ $$^{-1}$$) by using SENJU. Those results show that the performance of SENJU is as we expected.

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