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| 1 | X-ray Debye temperature and Grüneisen constant of NpO 2显示文摘 | Hiroyuki Serizawa Yasuo Arai Masahide Takano Yasufumi Suzuki | 1999 | Journal of Alloys and Compounds1999,,1: | 1 |
| 2 | A Clinicocytopathologic Study of Adenoma Malignum of the Uterine Cervix显示文摘 | Yasuo Hirai Nobuhiro Takeshima Atsuko Haga Yuuji Arai Futoshi Akiyama Katsuhiko Hasumi | 1998 | Gynecologic Oncology1998,,: | 1 |
| 3 | Pyrochemical treatment of spent nitride fuels for MA transmutation显示文摘Nitride fuels have several advantages including high thermal conductivity and high metal density(like metallic fuels) and high melting point and isotropic crystal structure(like oxide fuels). Since the late 1990 s, the partitioning and transmutation of minor actinides(MA) has been studied to decrease the long-term radio-toxicity of high-level waste and to mitigate the burden of final disposal. Japan Atomic Energy Agency(JAEA) has proposed a dedicated transmutation cycle using an accelerator-driven system(ADS) with nitride fuels containing MA. The nitride fuel cycle we have developed includes a pyrochemical process. Our focus is on the electrolysis of nitride fuels and their refabrication from the recovered actinides; other processes are similar to the technology for metal fuel treatment and have been studied elsewhere. Here, we summarize our activity on the development of the pyrochemical treatment of spent nitride fuels. | HAYASHI Hirokazu SATO Takumi SHIBATA Hiroki KURATA Masaki IWAI Takashi ARAI Yasuo | 2014 | Science China Chemistry2014,57,11: | 1 |
| 4 | On - chamber Readout System for the ATLAS MDT Muon Spectrometer显示文摘 | John Chapman Yasuo Arai | 2004 | IEEE2004,,: | 1 |
| 5 | Light penetration into cell suspensions of photosynthetic bacteria and relation to hydrogen production 显示文摘 | Eiju Nakada Yasuo Asada Takaaki Arai Jun Miyake | 1995 | Journal of Fermentation and Bioengineering1995,80,1: | 1 |
| 6 | Effect of Additive on Crystal Shape and Control of Xonotlite显示文摘 | Yasuo ARAI Tamotsu YASUE shigeti Aoki | 1995 | Inorganic Material1995,2,258: | 1 |
| 7 | State of the Art of Pyroprocessing Technology in Japan显示文摘 | Tadashi Inoue Tadafumi Koyama Yasuo Arai | 2011 | Energy Procedia2011,,: | 1 |
| 8 | Device-physics-based analytical model for single-event transients in SO1 CMOS logic显示文摘 | Daisuke Kobayashi Kazuyuki Hirose Veronique Ferlet- Cavrois Dale McMorrow Takahiro Makino Hirokazu Ike- da Yasuo Arai and Morifumi Ohno | 2009 | IEEE Trans Nucl Sci2009,56,6: | 1 |
| 9 | The clinical features of rectal cancers with high-frequency microsatellite instability (MSI-H) in Japanese males显示文摘 | Tsutomu Ishikubo Yoji Nishimura Kensei Yamaguchi Udompun Khansuwan Yoshiko Arai Terutada Kobayashi Yasuo Ohkura Yojiro Hashiguchi Yoichi Tanaka Kiwamu Akagi | 2004 | Cancer Letters2004,,1: | 1 |
| 10 | Two c-type cytochromes, nirM and nirC, encoded in the nit gene cluster of Pseudomonas aeruginosa act as electron donors for nitrite reductase 显示文摘 | NORIO HASEGAWA HIROYUKI ARAI YASUO IGARASHI | 2001 | Biochem Biophys Res Communicat2001,288,5: | 1 |
| 11 | Effect of Additive on Crystal Shape and Control of Xonotlite显示文摘 | Yasuo ARAI | 1995 | Inorganic Materials1995,2,258: | 1 |
| 12 | Comparison with Pt Pt/Au Ni/Au and Ta/Ti Ohmic Contacts for p-Type GaN显示文摘 | Arai T Sueyeshi H Yasuo K | 2001 | J Appl Phys2001,89,5: | 1 |
| 13 | Effect of additive on crystal shape and control of xonotlite 显示文摘 | Yasuo ARAI Tamotsu YASUE Shigeti Aoki | 1995 | Inorganic Material1995,258,2: | 1 |
| 14 | Controls of crystal shape and modif ication in preparation of calcium carbonate显示文摘 | Yasuo ARAI Tamotsu YASUE | 1990 | Gypsum & Lime1990,228,: | 1 |
| 15 | Primary solitary fibrous tumor (SFT) in the retroperitoneum显示文摘 | Itsuhiro Takizawa Toshihiro Saito Yasuo Kitamura Kei Arai Makoto Kawaguchi Kota Takahashi Noboru Hara | 2008 | Urologic Oncology: Seminars and Original Investigations2008,,3: | 1 |
| 16 | Thermochemical and thermophysical properties of minor actinide compounds显示文摘 | Kazuo Minato Masahide Takano Haruyoshi Otobe Tsuyoshi Nishi Mitsuo Akabori Yasuo Arai | 2009 | Journal of Nuclear Materials2009,,1: | 1 |
| 17 | Performance evaluation of an SOI pixel sensor with in-pixel binary counters显示文摘Introduction Pixel detectors fabricated with the silicon-on-insulator(SOI)technology suffered from the digital pickup,due to the capacitive coupling between the sensing electrode and the in-pixel circuit.In order to tackle this issue,an advanced process called double SOI has been developed.A prototype chip CPIXTEG3b adopting this new process was designed and characterized.While optimization concerning the double-SOI design and testing of the single pixel were already presented in a separate publication,this paper focuses on its noise performance of the full matrix and X-ray detection utilizing a synchrotron photon beam.Methods Equivalent noise charge(ENC)of the full pixel matrix was measured with electrical pulse tests.The threshold dispersion was minimized by the DAC tuning in each individual pixel.As a photon-counting X-ray imager,noise count accumulated up to 1 h was measured.Detection efficiency was measured with a micro-focused beam as well as a flat field generated by the X-ray scattering on a glassy carbon at the KEK PF beam line 14A.Results The typical ENC is 52 e−and the sigma of threshold dispersion is 10 e−over the full matrix.A merit of“zero”noise count is also demonstrated,which is consistent with the low ENC.The prototype chip has been tested with microbeam and used to measure the beam profile to be with a full width of 50µm at 2.4%of the maximum height.Both sensor depletion and charge sharing between neighboring pixels have been carefully characterized,providing insights for further development.The homogeneity of response to X-ray photons has been demonstrated in the flat field test.This work has drawn a final conclusion to the solution of digital pickup issue and opened a promising prospect in low-noise and high-resolution X-ray imaging. | Longlong Song Yunpeng Lu Ryo Hashimoto Ryutaro Nishimura Shunji Kishimoto Yang Zhou Zhigang Wu Yasuo Arai Qun Ouyang | 2018 | Radiation Detection Technology and Methods2018,2,1: | 0 |