(7) : Eiji Nakamura, Yuya Sakai, Izumi Sakai, Masakazu Takayama, Shin Yabukami, Yoshihiro Ishi, Tomonori Uesugi, Tsukasa Nakamura, Yoshiaki Nakao, Shigeru Inagaki, "fast-rise kicker magnet system by a waveform correction method using auxiliary magnets and a three bump orbit correction method", Nuclear Instruments and Methods in Physics Research, A 665 (2012) pp.019-024.
(6) : Eiji Nakamura, Masakazu Takayama, Shin Yabukami, "Fast beam injection and ejection method using a short-pulsed septum magnet for hadron accelerators", Nuclear Instruments and Methods in Physics Research, A 640 (2011) pp.29-37.
(5) : Eiji Nakamura, Masakazu Takayama, Shin Yabukami, Tomofumi Ichinomiya, Sho Nakamura, "Development of fast-rise and high-field kicker magnet system for particle accelerators", Journal of the Magnetic Society of Japan, 35, 96-101 (2011).
(4) : Eiji Nakamura, Masakazu Takayama, Shin Yabukami, "Electric field contributions of fast beam injection and ejection systems for particle accelerators", Nuclear Instruments and Methods in Physics Research, A 624 (2010) pp.554-559.
(3) : Eiji Nakamura, "Fast-rise high-field multi-turn coil kicker magnet operating in saturation region", Nuclear Instruments and Methods in Physics Research, A 618 (2010) pp.22-29.
(2) : Eiji Nakamura, "Fast-Rise High-Field Kicker Magnet Operating at Saturation", Nuclear Instruments and Methods in PhysicsResearch, A 612 (2009) pp.50-55.
(1) : Eiji Nakamura, Sumio Kitajima, MasakzuaTakayama, Shigeru Inagaki, Takeo Yoshida, Hiroshige Watanabe, "Particle Transport Study with an Electron Beam on TOHOKU UNIVERSITY Heliac", Japanese Journal of Applied Physics Vol. 36, Part. 1, No. 2 (1997) pp. 889-895.
*** Patents ***
Japan Patent No. 4543182, Inventor : Eiji Nakamura; validity: 2027-03-19.
Japan Patent No. 4697961, Inventors: Ken Makita, Eiji Sugiyama, Masaaki Aoki, Yoshikazu Murakami, Tadamichi Kawakubo, Eiji Nakamura; validity: 2024-02-20.
*** Related reviewed papers published for scientific journals as coauthor. ***
K. Takayama, et al., NIMA 577 (2007) pp.191-196.
K. Makita, et al., JMSJ 28 (2004) pp.326-329.
W. Jiang, et al., Proc. IEEE 92(7) (2004) pp. 1180-1196.
X. D. Zheng, et al., NIMA 407 (1998) pp.198-202.
S. Inagaki, et al., JJAP 36 (1997) pp.3697-3706.
H. Watanabe, et al., JSPF 72 (1996) pp.347-355.
S. Kitajima, et al., JJAP 34 (1995) pp.4223-4229.
(*1 NIM-A : Nuclear Instruments and Methods in Physics Research Section A : Accelerators, Spectrometers, Detecters and Associated Equipment. *2 JMSJ : Journal of the Magnetic Society of Japan. *3 JJAP : Japanese Journal of Applied Physics. *4 JSPF : The Japan Society of Plasma Science and Nuclear Fusion Research.)
Olds
Bowling Records
Y2023: 00,920/005G = ave.153
Y2022: 04,006/025G = ave.160
Y2021: 01,400/011G = ave.127
Y2020: 04,157/025G = ave.166
Y2019: 05,978/035G = ave.170
Y2018: 09,550/061G = ave.156
Y2017: 12,911/083G = ave.155
Y2016: 18,327/110G = ave.165
Y2015: 22,452/158G = ave.141
Y2013: 03,681/027G = ave.137
Y2012: 04,900/034G = ave.144
Y2010: 02,602/019G = ave.137
Y2024: 1,437/9G = ave. 159.6; 159.9pts/G for recent ten games.
#: (x / S) 2F15:
#: (x / S) 2F15: SPOLE
#647: 140 (x3 /3 S1) 2F15: SPOLE
#646: 235 (x8 /2 S0) 2F15: SPOLE
#645: 145 (x3 /3 S1) 2F15: SPOLE 0714
#644: 165 (x3 /4 S3) 2F15: SPOLE 0614
#643: 133 (x1 /4 S0) 2F15: SPOLE 0614
#642: 162 (x3 /4 S0) 2F15: SPOLE 0614
#641: 203 (x6 /3 S0) 2F15: SPOLE 0127 Over 200!
#640: 149 (x5 /1 S2) 2F15: SPOLE 0127
#639: 105 (x1 /1 S0) 2F15: SPOLE 0127
Y2023: 920/6G = ave. 153.3; 157.5 pts/G for recent ten games.
#638: 162 (x3 /4 S1) 2F15: SPOLE 1026
#637: 149 (x3 /4 S1) 2F15: SPOLE 1026
#636: 134 (x2 /3 S1) 2F15: SPOLE 1026 baby3-10
#635: 158 (x3 /3 S0) 2F15: SPOLE 0719
#634: 147 (x3 /2 S1) 2F15: SPOLE 0719
#633: 170 (x3 /5 S1) 2F15: SPOLE 0719
Y2022: 4,006/25G = ave. 160; 164.3pts/G for recent ten games.