Ключевые слова: beam lines, accelerator magnets, MgB2, magnets dipole, design, cryogenic systems, cryocoolers, comparison, conventional systems, ac losses, heat loads, efficiency
Seidel P., Schmidl F., Tympel V., Sieber T., Schonau T., Zakosarenko V., Schmelz M., Stolz R., Schwickert M., Machalett F., Stohlker T., Crescimbeni L., Haider D.
Ключевые слова: measurement technique, accelerator magnets, beam lines, current, comparison, inductance, cryogenic systems, magnetic shielding, squid
Ключевые слова: accelerator magnets, beam lines, facility, LTS, NbTi, cables, coils, separator, multipole magnets, design, prototype, fabrication
Ключевые слова: medical applications, proton irradiation, cyclotron, bridges, beam lines
Amemiya N., Ogitsu T., Ishii Y., Iwata Y., Takayama S., Noda K., Yoshimoto M., Sogabe Y., Inoue S., Luo X.
Amemiya N., Ogitsu T., Miyazaki H., Kurusu T., Koyanagi K., Ishii Y., Iwata Y., Takayama S., Kubo Y., Iwai S., Noda K., Yoshimoto M., Orikasa T.
Ключевые слова: medical applications, accelerator magnets, gantry, design, facility, beam lines
Ключевые слова: medical applications, proton irradiation, design parameters, magnets, prototype, cyclotron, beam lines
Ключевые слова: accelerator magnets, magnets dipole, design, design parameters, magnetic field distribution, homogeneity, fabrication, test results, new, beam lines
Ueda H., Mikami Y., Mitsubori H., Yoshida J., Fukuda M., Hatanaka K., Watazawa K., Morie T., HASHIMOTO A., Yorita T.
Kato T., Ueda H., Ueno E., Mikami Y., Mitsubori H., Yoshida J., Fukuda M., Hatanaka K., Watazawa K., HASHIMOTO A., Yorita T.
Ключевые слова: HTS, Bi2223, magnets dipole, switches, accelerator magnets, cryogenic systems, cryocoolers, design, design parameters, coils, test results, nitrogen liquid , critical caracteristics, critical current, n-value, magnetic field dependence, mechanical properties, strain effects, beam lines
Syrovatin V., Tsukanov V., Mezentsev N., Shkaruba V., Tarasenko O., Volkov A., Zorin A., Bragin A., Khrushchev S., Gusev Y., K.Zolotarev
Ключевые слова: wiggler, damping, cooling technology, LTS, NbTi, Nb3Sn, comparison, prototype, design parameters, cryogenic systems, test results, quench, status, beam lines
Okamura T., Takahashi T., Suzuki S., Makida Y., Iida M., Kasami K., Ohhata H., Kawai M., Kondo Y., Araoka O., Iwasaki R., Aoki K., Kakiguchi Y., Shirakabe Y., Sekimoto M.
Ключевые слова: spectrometer, magnets, cryocoolers, beam lines
Ogitsu T., Okamura T., Adachi T., Makida Y., Ohhata H., Ikedo Y., Miyake Y., Shimomura K., Strasser P., Kawamura N., Koda A., Yoshida M., Orikasa T., Okada R., Kadono R., Fujimori H., Nishiyama K.
Gupta R., Muratore J., Parker B., Wanderer P., Jain A., Charrier J., Boussuge T., Kakuno H., Ogitsu T., Makida Y., Nakamoto T., Sasaki K., Araoka O., Fujii Y., Iida M., Ishii T., Iwasaki R., Kimura N., Kobayashi T., Nakadaira T., Nakayoshi K., Ohhata H., Okamura T., Okada R., Sakashita K., Shibata M., Sugano M., Yoshida M., Anerella M., Escallier J., Ganetis G., Ghosh A.
Ключевые слова: accelerator magnets, status, magnetic systems, design, cryogenic systems, joints, quench, recovery characteristics, LTS, NbTi, high field magnets, beam lines
Ogitsu T., Sasaki K., Okamura T., Kobayashi T., Nakamoto T., Yamamoto A., Makida Y., Kimura N., Ohhata H., Fazilleau P., Queinec Y., Charrier J., Allard J., Anstett D., Bargueden P., Boussuge T., Bouty A., Dubois O., Durand G., Gibier D., Gournay J., Pouhalec P.L., Loiseau D., Lotrus P., Moliniй F., Pinvidic B., Zito M.
Ключевые слова: magnetic systems, accelerator magnets, quench detection, control systems, high field magnets, safety, beam lines
Ключевые слова: accelerator magnets, vacuum structure, design, cyclotron, high field magnets, beam lines
Nakamoto T., Sasaki K., Araoka O., Fujii Y., Higashi N., Iida M., Ishii T., Kimura N., Kobayashi T., Makida Y., Nakadaira T., Ogitsu T., Ohhata H., Okamura T., Sakashita K., Shibata M., Suzuki S., Yamamoto A., Ichikawa A., Kakuno H., Anerella M., Escallier J., Ganetis G., Ghosh A., Muratore J., Parker B., Wanderer P.
Ключевые слова: accelerator magnets, design parameters, LTS, NbTi, cables, power equipment, status, high field magnets, beam lines
Ogitsu T., Sasaki K., Okamura T., Nakamoto T., Adachi T., Makida Y., Ikedo Y., Nakahara K., Miyake Y., Shimomura K., Strasser P., Kawamura N., Koda A., Yoshida M.
Ключевые слова: design, coils solenoidal, accelerator magnets, cryocoolers, LTS, NbTi, wires, heat losses, quench protection, modeling, high field magnets, muon, beam lines
Ogitsu T., Sasaki K., Nakamoto T., Adachi T., Yamamoto A., Sato A., Makida Y., Ikedo Y., Miyake Y., Yoshida M., Kuno Y.
Ключевые слова: accelerator magnets, coils solenoidal, quench protection, coils model, LTS, NbTi, design parameters, design, high field magnets, muon, beam lines
Sasaki K., Tanaka K., Nakamoto T., Adachi T., Makida Y., Ajima Y., Ikedo Y., Nakahara K., Miyake Y., Shimomura K.
Ключевые слова: experimental devices, conduction cooled systems, magnetic diffusion, LTS, NbTi, coils solenoidal, coils model, current, magnetic field density, design, muon, beam lines
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