Zobrazeno 1 - 10
of 13
pro vyhledávání: '"Yoshikado Hosoda"'
Autor:
Toshiyuki Ohdaira, C. Suzawa, Mitsukuni Chiwaki, Kawakatsu Yamada, Yoshikado Hosoda, S. Isojima, Tetsuo Yamazaki, H. Usami, Tsutomu Noguchi, T. Masuda, Hideaki Ohgaki, Norihiro Sei, Tomohisa Mikado, T. Keishi, Ryoichi Suzuki, S. Sugiyama
Publikováno v:
Review of Scientific Instruments. 66:1960-1963
The 10‐T wiggler is an iron‐cored superconducting wiggler destined for Electrotechnical Laboratory’s 800‐MeV electron storage ring to enhance the available radiation. The design and manufacturing contract for this magnet was started in April
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 331:673-679
Several types of permanent magnet undulators for FELs have been developed that have a focusing force on the electron beam to avoid the spread of the beam in the undulator. However, the focusing force of these undulators cannot be changed after fabric
Autor:
Tsutomu Noguchi, Mitsukuni Chiwaki, Ryoichi Suzuki, Yoshikado Hosoda, T. Keishi, Hideaki Ohgaki, Kawakatsu Yamada, M. Koike, Takio Tomimasu, Tetsuo Yamazaki, H. Usami, M. Mikado, S. Sugiyama
Publikováno v:
Review of Scientific Instruments. 63:313-316
The design of a 10‐T superconducting wiggler as a synchrotron radiation source for angiography has been carried out to be installed in an 800‐MeV electron storage ring, TERAS, at Electrotechnical Laboratory (ETL). Synchrotron radiation generated
Autor:
Y Oka, T Saito, S. Sugiyama, Mitsukuni Chiwaki, Tetsuo Yamazaki, Tomohisa Mikado, T Mitsui, Takio Tomimasu, Y Hirata, Hiroshi Takada, Hideaki Ohgaki, T. Noguchi, R. Suzuki, Yasumitsu Tsutsui, Katsuji Emura, Yoshikado Hosoda
Publikováno v:
Physica Scripta. :137-140
At the Electrochemical Laboratory (ETL) four compact storage rings, TERAS, NIJI-I–III, have been already constructed and a compact storage ring, NIJI-IV, with long straight sections for FEL experiments will be constructed in 1990. TERAS is an 800-M
Publikováno v:
11th International Conference on Magnet Technology (MT-11) ISBN: 9789401068321
The superconducting bending magnets with a bending radius of 0.5m and magnetic field of 4.0T have been developed. The bending angle is 90 degrees so that four magnets are installed in the synchrotron radiation ring whose size is 3m × 5m. The main co
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::f7a5376dab80241a1f63e3bc568d02dc
https://doi.org/10.1007/978-94-009-0769-0_41
https://doi.org/10.1007/978-94-009-0769-0_41
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 341:ABS128-ABS129
Autor:
Yoshikado Hosoda, Takato Masuda, Toru Okazaki, Katsuji Emura, Fujio Miura, Yasumitsu Tsutsui, Chizuru Suzawa, Hiroshi Takada, Tomohiro Keishi, Takio Tomimasu
Publikováno v:
Japanese Journal of Applied Physics. 30:1893
The NIJI-III is a compact superconducting electron storage ring for industrial applications. Features of the ring include four strongly curved large-bore superconducting bending magnets utilizing quadrupole coils with a circular cross section surroun
Publikováno v:
TEION KOGAKU (Journal of Cryogenics and Superconductivity Society of Japan). 17:322-325
Autor:
Nobuhiro Shibuta, Hajime Hitotsuyanagi, Hidehito Mukai, Takeshi Hikata, Kazuya Ohmatsu, Masayuki Nagata, Yoshikado Hosoda, Kenichi Sato, Maumi Kawashima
Publikováno v:
Advances in Superconductivity ISBN: 9784431680864
Ag-sheathed high Tc superconducting wires of YBa2Cu3O7-x and Bi0.8Pb0.2SrCaCU1.5Ox were developed. Improvements in the density and the orientation of crystals brought about by press processing have been investigated, and by adopting adequate processi
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::60dceedbd8a7c2ad76e4981fec1e2bba
https://doi.org/10.1007/978-4-431-68084-0_63
https://doi.org/10.1007/978-4-431-68084-0_63
Publikováno v:
Japanese Journal of Applied Physics. 21:167
An effective cooling method is essential for GaAs concentrator solar cells operated under highly concentrated sunlight, because the conversion efficiencies of the cells decrease at high temperature. We fabricated aluminum-cored printed circuit bases