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Essential protocols for in vitro evaluation of nanoparticle
Hitoshi Iwahashi,Masanori Horie,Keiko Nishio,Shigehisa Endoh,Haruhisa Kato,Katsuhide Fujita,Shinichi Kinugasa,Arisa Miyauchi,Ayako Nakamura,Junko Takahashi,Etsuo Niki,Yasukazu Yoshida,Junko Nakanishi 한국환경독성학회 2010 한국독성학회 심포지움 및 학술발표회 Vol.2010 No.11
Electron compound nature in a surface atomic layer of a two-dimensional hexagonal lattice
Matsuda, Iwao,Nakamura, Fumitaka,Kubo, Keisuke,Hirahara, Toru,Yamazaki, Shiro,Choi, Won Hoon,Yeom, Han Woong,Narita, Hisashi,Fukaya, Yuki,Hashimoto, Mie,Kawasuso, Atsuo,Ono, Masanori,Hasegawa, Yukio,H American Physical Society 2010 Physical review. B, Condensed matter and materials Vol.82 No.16
Tseng, Chih-Yin,Asada, Keiichi,Nakamura, Masanori,Pu, Hung-Yi,Algaba, Juan-Carlos,Lo, Wen-Ping American Astronomical Society 2016 The Astrophysical journal Vol.833 No.2
<P>The structure of the NGC 6251 jet on the milliarcsecond scale is investigated using images taken with the European VLBI Network and the Very Long Baseline Array. We detect a structural transition of the jet from a parabolic to a conical shape at a distance of (1-2) x 10(5) times the Schwarzschild radius from the central engine, which is close to the sphere of gravitational influence of the supermassive black hole (SMBH). We also examine the jet pressure profiles with the synchrotron minimum energy assumption to discuss the physical origin of the structural transition. The NGC 6251 jet, together with the M87 jet, suggests a fundamental process of structural transition in the jets of active galactic nuclei (AGNs). Collimated AGN jets are characterized by their external galactic medium, showing that AGN jets interplay with the SMBH and its host galaxy.</P>
Ferroelectric and Magnetoelectric Properties of BiFeO3 Thin Films Prepared on a Membrane Structure
Seiji Nakashima,Kwi-Young Yun,Masanori Okuyama,Yoshitaka Nakamura 한국물리학회 2007 THE JOURNAL OF THE KOREAN PHYSICAL SOCIETY Vol.51 No.2I
Multiferroic BiFeO3 (BFO) thin films have been deposited on Pt/TiO2/SiO2 membrane and Pt/TiO2/SiO2/Si plate structures by using pulsed laser deposition. The X-ray diffraction pattern of the BFO thin film on the membrane structure slightly shifted to lower angle compared to that of the film on the Pt/TiO2/SiO2/Si substrate. Ferroelectric hysteresis loops were also obtained successfully at a measurement temperature of 150 K. The BiFeO3 thin film on the membrane structure showed a remanent polarization (Pr) of 91 μC/cm2 for a maximum applied voltage of 20 V, which was larger than that of the film on the Pt/TiO2/SiO2/Si plate structure at the same measurement conditions (Pr: 54 μC/cm2). Under a magnetic field perpendicular to the film plane, the remanent polarization (Pr) of the BiFeO3 thin film on the membrane structure at 150 K increased from 91 μC/cm2 (0 T) to 97 μC/cm2 (1.1 T).