Ключевые слова: accelerator magnets, muon, coils solenoidal, design parameters, measurement technique, magnetic flux distribution
Ключевые слова: magnets, LTS, NbTi, design, design parameters, coils solenoidal, muon, uniformity, magnetic field distribution, errors, numerical analysis
Ogitsu T., Sasaki K., Ohuchi N., Okamura T., Makida Y., Ohhata H., Aoki M., Yoshida M., Iio M., Mihara S., Arimoto Y., Aoki K., Kurosawa N., Oonaka M., Sumi N.
Ключевые слова: magnets, coils solenoidal, magnetic field distribution, homogeneity, vibration, modeling, numerical analysis
Ключевые слова: MRI magnets, magnetic field distribution, homogeneity, shimming, numerical analysis
Ключевые слова: measurement technique, vortex structures, sensors, HTS, YBCO, thin films
Ogitsu T., Sasaki K., Sugano M., Tanaka K., Takahashi N., Nakamoto T., Terashima A., Suzuki K., Kimura N., Iida M., Todesco E., Chiba T., Okada R., Musso A., Ikemoto Y., Okada N., Kawamata H., Ohata H., Horikoshi A., Yanagisawa M.
Ключевые слова: LHC, luminosity, upgrade, LTS, NbTi, accelerator magnets, magnets dipole, prototype, design, design parameters, fabrication, test results, quench current, mechanical properties, stress effects, cryogenic systems
Sasaki K., Okamura T., Makida Y., Yoshida M., Iio M., Mihara S., Fukao Y., Ohata H., Kurosawa N., Sumi N., Onaka M.
Ключевые слова: magnetic systems, accelerator magnets, LTS, NbTi, cables, coils solenoidal, cryogenic systems, cooling technology, design, status, fabrication
Ogitsu T., Sasaki K., Sugano M., Tanaka K., Takahashi N., Nakamoto T., Suzuki K., Kimura N., Todesco E., Okada R., Musso A., Ikemoto Y., Okada N., Kawamata H., Ohata H.
Ключевые слова: LHC, luminosity, magnets dipole, magnetic separation, LTS, NbTi, prototype, fabrication, cryogenic systems, magnetic properties, measurement technique, test results
Ключевые слова: MRI magnets, homogeneity, shimming, plates, test results
Ogitsu T., Sasaki K., Sugano M., Tanaka K., Takahashi N., Nakamoto T., Suzuki K., Kimura N., Higashi N., Iida M., Todesco E., Ikeda H., Okada R., Musso A., Ikemoto Y., Okada N., Kawamata H., Ohata H.
Ключевые слова: LHC, luminosity, magnets dipole, design parameters, LTS, NbTi, quench protection, heater, test results
Ogitsu T., Sasaki K., Sugano M., Tanaka K., Takahashi N., Nakamoto T., Suzuki K., Kimura N., Higashi N., Iida M., Ohhata H., Todesco E., Ikeda H., Okada R., Musso A., Ikemoto Y., Okada N., Kawamata H.
Ключевые слова: LHC, luminosity, upgrade, magnets dipole, LTS, NbTi, training effect, coils, supporting structure, stress effects, strain effects, quench current
Sasaki K., Okamura T., Matsuo M., Makida Y., Aoki I., Iida M., Ohhata H., Ki T., Yoshida M., Oonaka M., Tateno A.
Ключевые слова: magnets, coils solenoidal, LTS, NbTi, wires, conduction cooled systems, cryogen transfer line, helium liquid, cryogenic systems, refrigerator, design, fabrication, muon
Sasaki K., Tanaka T., Yamaguchi H., Seo S., Abe M., Shimomura K., Mibe T., Flay D., Kawall D., Ueno Y., Winter P.
Ключевые слова: measurement technique, magnetic sensors
Ogitsu T., Sasaki K., Sugano M., Tanaka K., Takahashi N., Nakamoto T., Suzuki K., Kimura N., Higashi N., Iida M., Ohhata H., Todesco E., Okada R., Musso A., Ikemoto Y., Okada N., Kawamata H., Enomoto S.
Ключевые слова: LHC, upgrade, LTS, NbTi, magnets dipole, luminosity, coils, mechanical treatment, stress effects, fabrication, training effect, numerical analysis, quench current
Ogitsu T., Sasaki K., Sugano M., Tanaka K., Tanaka K., Takahashi N., Nakamoto T., Suzuki K., Kimura N., Higashi N., Iida M., Ohhata H., Ikeda H., Okada R., Musso A., Ikemoto Y., Okada N., Kawamata H.
Ogitsu T., Sasaki K., Sugano M., Tanaka K., Takahashi N., Nakamoto T., Suzuki K., Kimura N., Higashi N., Iida M., Todesco E., Okada R., Musso A., Ikemoto Y., Okada N., Kawamata H., Enomoto S., Ohata H.
Ключевые слова: LHC, luminosity, magnets dipole, model small-scale, training effect, mechanical properties, LTS, NbTi, quench current, stress effects, coils, deformation, experimental results, upgrade
Ключевые слова: accelerator magnets, design, measurement setup, iron yoke, homogeneity, LTS, NbTi, bulk, modeling, numerical analysis, design parameters, magnetic field distribution, muon
Ключевые слова: magnets, quench, strain effects, insulating medium, LTS, NbTi, coils model, mechanical properties, bending process, design parameters, fabrication, experimental results
Ogitsu T., Sasaki K., Sugano M., Tanaka K., Takahashi N., Nakamoto T., Suzuki K., Kimura N., Higashi N., Iida M., Ohhata H., Todesco E., Okada R., Musso A., Ikemoto Y., Okada N., Kawamata H., Enomoto S.
Ключевые слова: LHC, luminosity, upgrade, magnets dipole, saturation, iron yoke, magnetic field distribution, experimental results, numerical analysis
Ogitsu T., Sasaki K., Sugano M., Tanaka K., Takahashi N., Nakamoto T., Kimura N., Higashi N., Iida M., Ohhata H., Sugawara S., Todesco E., Okada R., Musso A., Okada N., Kawamata H., Enomoto S.
Ключевые слова: LHC, luminosity, magnets dipole, LTS, NbTi, prototype, magnetic field density, measurement technique, magnetic field distribution, upgrade
Ogitsu T., Sasaki K., Sugano M., Okamura T., Yang Y., Nakamoto T., Makida Y., Terashima A., Ki T., Yoshida M., Iio M., Mihara S., Kawamata H.
Ogitsu T., Sasaki K., Sugano M., Tanaka K., Takahashi N., Nakamoto T., Kimura N., Higashi N., Iida M., Sugawara S., Todesco E., Okada R., Musso A., Okada N., Kawamata H., Enomoto S., Ohata H.
Ключевые слова: LHC, luminosity, coils model, fabrication, test results, magnets dipole, quench properties, LTS, NbTi, design, design parameters, mechanical properties, stress distribution, strain effects, training effect, upgrade
Sasaki K., Semba T., Tanaka Y., Makida Y., Ohhata H., Kido S., Murata Y., Miyake Y., Shimomura K., Strasser P., Kawamura N., Nakajima S., Hagiwara Y., Kurosawa N.
Ogitsu T., Sasaki K., Sugano M., Nakamoto T., Kimura N., Higashi N., Todesco E., Xu Q., Okada R., Musso A., Ikemoto Y., Okada N., Kawamata H., Enomoto S.
Ключевые слова: LHC, magnets dipole, model small-scale, LTS, NbTi, mechanical properties, stress effects, strain effects, fabrication, iron yoke, upgrade
Ogitsu T., Sasaki K., Sugano M., Takahashi N., Nakamoto T., Kimura N., Higashi N., Todesco E., Xu Q., Okada R., Musso A., Ikemoto Y., Okada N., Kawamata H., Enomoto S.
Ключевые слова: LHC, luminosity, magnets dipole, irradiation effects, design, design parameters, LTS, NbTi, iron yoke, fabrication, status, upgrade
Ogitsu T., Sasaki K., Sugano M., Okamura T., Yang Y., Nakamoto T., Makida Y., Ki T., Yoshida M., Iio M., Mihara S.
Ключевые слова: cryogenic systems, accelerator magnets, coils solenoidal, design parameters, helium liquid, heat loads, pressure drop, status
Ключевые слова: measurement setup, magnetic sensors, accelerator magnets, NMR magnet, Hall sensor, measurement technique
Ogitsu T., Sasaki K., Sugano M., Nakamoto T., Kimura N., Higashi N., Todesco E., Idesaki A., Xu Q., Yoshida M., Iio M., Iwasaki R., Ikemoto Y., Okada N., Kawamata H., Enomoto S.
Ключевые слова: LHC, magnets dipole, modeling, LTS, NbTi, design, design parameters, mechanical properties, stress effects, numerical analysis, irradiation effects, coils, fabrication, model small-scale, upgrade
Kikuchi A., Ogitsu T., Tsuchiya K., Sugano M., Takeuchi T., Barzi E., Tanaka K., Takahashi N., Nakamoto T., Sasaki K.-I., Yamamoto A., Terashima A., Sabbi G., Zlobin A., Kimura N., Higashi N., Xu Q., Okada R., Ikemoto Y., Lio M., Enomoto S.
Ogitsu T., Sugano M., Okamura T., Yang Y., Nakamoto T., Sasaki K.-I., Makida Y., Yoshida M., Iio M., Mihara S., Fukao Y.
Ключевые слова: accelerator magnets, LHC, magnets dipole, design parameters, magnetic field distribution, coils saddle, cables, high field magnets, new, upgrade
Ogitsu T., Sasaki K., Sugano M., Okamura T., Yamamoto A., Kimura N., Shimomura K., Saito N., Ohkubo R., Kume T., Okada R.
Ключевые слова: experimental devices, coils solenoidal, homogeneity, cryogenic systems, vibration, frequency dependence, heat transfer, current leads, HTS, bulk, muon
Ключевые слова: LHC, magnets dipole, accelerator magnets, LTS, NbTi, coils, design parameters, iron yoke, supporting structure, mechanical properties, stress effects, design, high field magnets, upgrade
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
Kikuchi A., Ogitsu T., Sasaki K., Tsuchiya K., Takeuchi T., Barzi E., Yamada R., Zlobin A.V., Caspi S., Ferracin P., Nakamoto T., Yamamoto A., Terashima A., Felice H., Sabbi G., Higashi N., Xu Q., Iio M., Hafalia R.R.
Ключевые слова: accelerator magnets, design, measurement technique, coils solenoidal, supporting structure, LTS, NbTi, strands, high field magnets, muon
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
Kikuchi A., Ogitsu T., Sasaki K., Tsuchiya K., Takeuchi T., Nakamoto T., Yamamoto A., Terashima A., Todesco E., Xu Q.
Ключевые слова: accelerator magnets, LHC, design, magnets dipole, LTS, Nb3Al, NbTi, Nb3Sn, numerical analysis, critical caracteristics, Jc/B curves, design parameters, supporting structure, high field magnets, upgrade
Amemiya N., Kikuchi A., Ogitsu T., Sasaki K., Tsuchiya K., Takeuchi T., Nakamoto T., Yamamoto A., Terashima A., Nakagawa K., Xu Q., Yoshida M., Jin X., Iio M.
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
Ogitsu T., Sasaki K.-I., Nakayama H., Yamamoto A., Kimura N., Iinuma H., Mibe T., Saito N., Obata T.
Ключевые слова: experimental devices, coils solenoidal, vibration, control systems, measurement technique, magnetic field distribution, new
Ключевые слова: quench protection, HTS, Bi2223, tapes, coils, multilayered structures, experimental results
Kikuchi A., Tsuchiya K., Takeuchi T., Barzi E., Yamada R., Zlobin A.V., Lamm M., Nakamoto T., Yamamoto A., Takigawa H., Terashima A., Turrioni D., Nakagawa K., Sasaki K.-., Qingjin X.
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
Ключевые слова: HTS, Bi2223, cylinders, bulk, FCL inductive, cryocoolers, magnetic diffusion, numerical analysis, temperature distribution, experimental results, power equipment
Ключевые слова: HTS, YBCO, bulk, meander, FCL resistive, thermal expansion, stress distribution, thermal stress, numerical analysis, power equipment
Nishizawa C., Onishi T., Sasaki K.(ksasaki@eng.hokudai.ac.jp)
Ключевые слова: magnetic shielding, HTS, Bi2223, rings, cryocoolers, numerical analysis, FCL inductive, bulk, power equipment
Onishi T.(onishi@eng.hokudai.ac.jp), Sasaki K.(sasaki@eng.hokudai.ac.jp), Akimoto R.(akimoto@eng.hokudai.ac.jp)
Ключевые слова: FCL resistive, current waveforms, HTS, Bi2223, bulk, rods, flux flow resistance, experimental results, power equipment
Yonekawa H., Kobayashi E., Ogitsu T., Sasaki K., Ohuchi N., Tsuchiya K., Shintomi T., Amemiya N.(ame@rain.dnj.ynu.ac.jp)
Ключевые слова: LTS, NbTi, quench, stability, experimental results, magnetic properties
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