Satoshi Awaji
Satoshi Awaji
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Cited by
Cited by
Substitution for copper in a high-Tc superconductor YBa2Cu3O7–δ
Y Maeno, T Tomita, M Kyogoku, S Awaji, Y Aoki, K Hoshino, A Minami, ...
Nature 328 (6130), 512-514, 1987
Significantly enhanced critical current densities in MgB2 tapes made by a scaleable nanocarbon addition route
Y Ma, X Zhang, G Nishijima, K Watanabe, S Awaji, X Bai
Applied Physics Letters 88 (7), 2006
Quantum Hall effect in a bulk antiferromagnet EuMnBi2 with magnetically confined two-dimensional Dirac fermions
H Masuda, H Sakai, M Tokunaga, Y Yamasaki, A Miyake, J Shiogai, ...
Science advances 2 (1), e1501117, 2016
First performance test of a 25 T cryogen-free superconducting magnet
S Awaji, K Watanabe, H Oguro, H Miyazaki, S Hanai, T Tosaka, S Ioka
Superconductor Science and Technology 30 (6), 065001, 2017
Development and large volume production of extremely high current density YBa2Cu3O7 superconducting wires for fusion
A Molodyk, S Samoilenkov, A Markelov, P Degtyarenko, S Lee, V Petrykin, ...
Scientific reports 11 (1), 2084, 2021
Realization of practical level current densities in Sr0. 6K0. 4Fe2As2 tape conductors for high-field applications
X Zhang, C Yao, H Lin, Y Cai, Z Chen, J Li, C Dong, Q Zhang, D Wang, ...
Applied Physics Letters 104 (20), 2014
High transport current superconductivity in powder-in-tube Ba0. 6K0. 4Fe2As2 tapes at 27 T
H Huang, C Yao, C Dong, X Zhang, D Wang, Z Cheng, J Li, S Awaji, ...
Superconductor Science and Technology 31 (1), 015017, 2017
Magnetic Field-Induced Insulator-Semimetal Transition in a Pyrochlore
K Ueda, J Fujioka, BJ Yang, J Shiogai, A Tsukazaki, S Nakamura, S Awaji, ...
Physical review letters 115 (5), 056402, 2015
Noncontact measurement of thermal conductivity of liquid silicon in a static magnetic field
H Kobatake, H Fukuyama, I Minato, T Tsukada, S Awaji
Applied Physics Letters 90 (9), 2007
Superconducting properties of 100-m class Sr0. 6K0. 4Fe2As2 tape and pancake coils
X Zhang, H Oguro, C Yao, C Dong, Z Xu, D Wang, S Awaji, K Watanabe, ...
IEEE Transactions on Applied Superconductivity 27 (4), 1-5, 2017
Magnetic Field Induced Sign Reversal of the Anomalous Hall Effect in a Pyrochlore Ferromagnet : Evidence for a Spin Chirality Mechanism
Y Taguchi, T Sasaki, S Awaji, Y Iwasa, T Tayama, T Sakakibara, S Iguchi, ...
Physical review letters 90 (25), 257202, 2003
Large transport critical currents of powder-in-tube Sr0. 6K0. 4Fe2As2/Ag superconducting wires and tapes
L Wang, Y Qi, D Wang, X Zhang, Z Gao, Z Zhang, Y Ma, S Awaji, ...
Physica C: Superconductivity 470 (2), 183-186, 2010
New 25 T cryogen-free superconducting magnet project at Tohoku University
S Awaji, K Watanabe, H Oguro, S Hanai, H Miyazaki, M Takahashi, S Ioka, ...
IEEE transactions on applied superconductivity 24 (3), 1-5, 2013
High critical current density and low anisotropy in textured Sr1−xKxFe2As2 tapes for high field applications
Z Gao, Y Ma, C Yao, X Zhang, C Wang, D Wang, S Awaji, K Watanabe
Scientific Reports 2 (1), 998, 2012
X-ray diffraction study of the structural phase transition of Ni2MnGa alloys in high magnetic fields
Y Ma, S Awaji, K Watanabe, M Matsumoto, N Kobayashi
Solid State Communications 113 (12), 671-676, 2000
X-ray Diffraction Investigation in High Fields at Low Temperature for Nd0.5Sr0.5MnO3
K Watanabe, Y Watanabe, S Awaji, M Fujiwara, N Kobayashi, T Hasebe
Advances in Cryogenic Engineering Materials, 747-752, 1998
11 T liquid helium-free superconducting magnet
K Watanabe, S Awaji, J Sakuraba, K Watazawa, T Hasebe, K Jikihara, ...
Cryogenics 36 (12), 1019-1025, 1996
Hot pressing to enhance the transport Jc of Sr0.6K0.4Fe2As2 superconducting tapes
H Lin, C Yao, X Zhang, C Dong, H Zhang, D Wang, Q Zhang, Y Ma, ...
Scientific reports 4 (1), 6944, 2014
Containerless melting of glass by magnetic levitation method
N Kitamura, M Makihara, M Hamai, T Sato, I Mogi, S Awaji, K Watanabe, ...
Japanese Journal of Applied Physics 39 (4A), L324, 2000
Noncontact modulated laser calorimetry in a dc magnetic field for stable and supercooled liquid silicon
H Kobatake, H Fukuyama, T Tsukada, S Awaji
Measurement Science and Technology 21 (2), 025901, 2009
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