Rchr
J-GLOBAL ID:200901054965740580
Update date: Jan. 28, 2025
Takeda Masayasu
タケダ マサヤス | Takeda Masayasu
Affiliation and department:
Other affiliations (2):
Research field (1):
Magnetism, superconductivity, and strongly correlated systems
Research keywords (1):
偏極中性子
Research theme for competitive and other funds (15):
- 2013 - 2016 Three-dimensional internal structures in the permanent magnets extracted from small-angle neutron scattering patterns
- 2006 - 2007 Neutron reflectivity study on buried hetero-interface of D monolayer and growth of novel hetero-structure
- 2005 - 2007 Magnetic Structural Analysis of Magnetic Thin Films Artificially Modulated on a Monatomic Layer scale by Polarized Neutron Scattering Technique
- 2006 - 2006 X線・中性子解析による「埋もれた」界面の科学に関する調査
- 1999 - 2003 磁性体・超伝導体等の高エネルギースピン励起とその局所構造の研究
- 2000 - 2002 Controll and Quantitative Analysis of Spin Disorder at Magnetic fractal Interface
- 2000 - 2002 Critical Phenomena and Dynamics of Orbital Degrees of Freedom
- 1998 - 1998 ナノスケール強磁性ドメインを利用した超伝導の微小磁場制御
- 1997 - 1997 ナノスケール強磁性ドメインを利用した巨大磁気抵抗効果の微小磁場制御
- 1995 - 1996 Developement of thermal neutron beam with high luminocity
- 1994 - 1995 Investigation of Surface and Interfacial Roughness in multilayrs by Neutron Reflectivity Measurements
- 1993 - 1995 Very precise detection of spin fluctuation by polarized neutrons
- 1993 - 1994 Development of Novel Experimental Method by Polarized Neutrons
- 1990 - 1991 Research Development for Producing High Quality Neutron Polarizers
- 中性子散乱法を用いた磁性体の研究
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Papers (77):
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Mari Mizusawa, Kenji Sakurai, Dai Yamazaki, Masayasu Takeda. An electrochemical cell with vertical geometry for neutron reflectivity measurements. PHYSICA B-CONDENSED MATTER. 2018. 551. 270-273
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Maruyama Ryuji, Yamazaki Dai, Akutsu Kazuhiro*, Hanashima Takayasu*, Miyata Noboru*, Aoki Hiroyuki, Takeda Masayasu, Soyama Kazuhiko. Development of high-polarization Fe/Ge neutron polarizing supermirror; Possibility of fine-tuning of scattering length density in ion beam sputtering. Nuclear Instruments and Methods in Physics Research A. 2018. 888. 70-78
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Nakajima Kenji, Kawakita Yukinobu, Ito Shinichi*, Abe Jun*, Aizawa Kazuya, Aoki Hiroyuki, Endo Hitoshi*, Fujita Masaki*, Funakoshi Kenichi*, Gong W.*, et al. Materials and Life Science Experimental Facility (MLF) at the Japan Proton Accelerator Research Complex, 2; Neutron scattering instruments. Quantum Beam Science (Internet). 2017. 1. 3. 9\_1-9\_59
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K. Ohoyama, T. Yokoo, S. Itoh, M. Nanbu, K. Iwasa, M. Ohkawara, N. Kaneko, T. Ino, H. Hayashida, T. Oku, et al. Polarisation Analysis Neutron Spectrometer, POLANO, at J-PARC - Concept and Magnetic Field Optimisation. Journal of Physics: Conference Series. 2016. 711. 1
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H. Hayashida, T. Oku, H. Kira, K. Sakai, K. Hiroi, T. Ino, T. Shinohara, T. Imagawa, M. Ohkawara, K. Ohoyama, et al. Development of a He-3 nuclear spin flip system on an in-situ SEOP He-3 spin filter and demonstration for a neutron reflectometer and magnetic imaging technique. INTERNATIONAL CONFERENCE ON POLARISED NEUTRONS FOR CONDENSED MATTER INVESTIGATIONS (PNCMI 2014). 2016. 711. 012007/1-9
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MISC (98):
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Takeda Masayasu. Neutrons at Tokai village: New era of neutron science and technology; Opening of a concert in collaboration with an intense steady neutron source (JRR-3) and an intense pulsed neutron one (J-PARC MLF). Bunseki. 2021. 2021. 11. 611-615
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Takeda Masayasu. SUIREN (polarized neutron reflectometer). Hamon. 2021. 31. 1. 18-19
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Takeda Masayasu. What should we learn from the back numbers of HAMON ?. Hamon. 2020. 30. 1. 7-8
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Shibayama Mitsuhiro*, Murayama Yoji, Takeda Masayasu. Report from JRR-3. AONSA Newsletter (Internet). 2019. 11. 1. 20
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Takeda Masayasu. Research and development using the quantum beams in Japan Atomic Energy Agency. Hoshasen To Sangyo. 2017. 142. 34-37
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Lectures and oral presentations (190):
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None
(日本中性子科学会第24回年会)
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Current status of the polarized neutron reflectometer SUIREN
(日本中性子科学会第24回年会)
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Outline of investigation on magnetism using neutron scattering
(令和5年度第3回もんじゅサイトの新試験研究炉セミナー)
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Research and development using research reactors (focusing on the JRR-3 as an example)
(量子に係る知見の収集を目的とした講演(防衛装備庁技術戦略部主催))
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Gamma-ray intensity from $^{115}$In induced by grazing-incidence neutrons on an InP substrate measured as a function of neutron glancing angle
(2023年第70回応用物理学会春季学術講演会)
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Professional career (1):
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