Original Papers- OKADA Tatsunori -
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[2020]
1.A Possible Explanation for Double-Peak Structure in Strain Dependence of Critical Current Density in REBa2Cu3O7−δ Coated Conductors.[Superconductor Science and Technology,(2020)]Tatsunori Okada, Hidenori Misaizu, Satoshi Awaji
10.1088/1361-6668/aba352
2.Mechanical Properties of BaHfO3-Doped EuBCO Coated Conductors Fabricated by Hot-Wall PLD on IBAD Template.[IEEE Transactions on Applied Superconductivity,30(4),(2020),1-5]Shinji Fujita, Shogo Muto, Yasuhiro Iijima, Masanori Daibo, Tatsunori Okada, Satoshi Awaji
10.1109/TASC.2020.2965503
3.Superconducting-Gap Anisotropy of Iron Pnictides Investigated via Combinatorial Microwave Measurements.[Scientific Reports,10(1),(2020),7046-]Tatsunori Okada, Yoshinori Imai, Kentaro Kitagawa, Kazuyuki Matsubayashi, Masamichi Nakajima, Akira Iyo, Yoshiya Uwatoko, Hiroshi Eisaki, Atsutaka Maeda
[2019]
4.3-D Properties in (RE)BCO Tapes Measured in Fields up to 35T.[IEEE Transactions on Applied Superconductivity,29(5),(2019),1-5]Andrew P. Smith, Mark J. Raine, Elizabeth Surrey, Satoshi Awaji, Tatsunori Okada, Damian P. Hampshire
10.1109/TASC.2019.2895218
5.Field Stability Analysis of 25 T Cryogen-Free Superconducting Magnet and Upgrade Plans for 30 T System at HFLSM, IMR, Tohoku University.[IEEE Transactions on Applied Superconductivity,29(5),(2019),1-5]Satoshi Awaji, Yuto Imai, Kohki Takahashi, Tatsunori Okada, Arnaud Badel, Hiroshi Miyazaki, Satoshi Hanai, Shigeru Ioka
10.1109/TASC.2019.2898699
6.Flux-Pinning Properties of BaHfO3-Doped EuBCO-Coated Conductors Fabricated by Hot-Wall PLD.[IEEE Transactions on Applied Superconductivity,29(5),(2019),1-5]Shinji Fujita, Shogo Muto, Wataru Hirata, Tomo Yoshida, Kazuomi Kakimoto, Yasuhiro Iijima, Masanori Daibo, Takanobu Kiss, Tatsunori Okada, Satoshi Awaji
10.1109/TASC.2019.2896535
7.Longitudinal Magnetic Field Effects on (Y,Gd)Ba2Cu3O7−δ Coated Conductor With BaHfO3 Nanoparticles Fabricated by UTOC-MOD Method.[IEEE Transactions on Applied Superconductivity,29(5),(2019),1-5]Tatsunori Okada, Hidenori Misaizu, Satoshi Awaji, Koichi Nakaoka, Takato Machi, Teruo Izumi, Masashi Miura
10.1109/TASC.2019.2899745
8.Influence of joint pressure on superconducting and mechanical properties for jointed GdBa2Cu3Oy coated conductors via precursor films.[Japanese Journal of Applied Physics,58(5),(2019),050907-1-050907-5]Tomohiro Miyajima, Ryo Teranishi, Syotaro Yasuyama, Yukio Sato, Kenji Kaneko, Valery Petrykin, Sergey Lee, Tatsunori Okada, Satoshi Awaji, Akiyoshi Matsumoto
9.Microstructures of superconducting joint between GdBa2Cu3Oy-coated conductors via additionally deposited precursor films.[Japanese Journal of Applied Physics,58(5),(2019),050913-1-050913-5]Tomohiro Miyajima, Ryo Teranishi, Syotaro Yasuyama, Yukio Sato, Kenji Kaneko, Takuya Maeda, Minoru Ochi, Kazuya Hiramatsu, Miyuki Nakamura, Valery Petrykin, Sergey Lee, Tatsunori Okada, Satoshi Awaji
10.Longitudinal Magnetic Field Effects on (Y,Gd)Ba2Cu3O7−δ Coated Conductors with BaHfO3 Nanoparticles Fabricated by UTOC-MOD Process.[IEEE Transactions on Applied Superconductivity,29(5),(2019),8002705-]Tatsunori Okada, Hidenori Misaizu, Satoshi Awaji, Koichi Nakaoka, Takato Machi, Teruo Izumi, and Masashi Miura
[2018]
11.Development of Long-Length BMO-Doped REBCO Coated Conductors by Hot-Wall PLD Process.[IEEE Transactions on Applied Superconductivity,28(4),(2018),6600604-]Shinji Fujita, Shogo Muto, Wataru Hirata, Yutaka Adachi, Tomo Yoshida, Mitsunori Igarashi, Kazuomi Kakimoto, Yasuhiro Iijima, Kunihiro Naoe, Takanobu Kiss, Tatsunori Okada, and Satoshi Awaji
12.Pressure-induced coherent sliding-layer transition in the excitonic insulator Ta2NiSe5.[IUCrJ,5,(2018),158-]A. Nakano, K. Sugawara, S. Tamura, N. Katayama, K. Matsubayashi, T. Okada, Y. Uwatoko, K. Munakata, A. Nakao, H. Sagayama, R. Kumai, K. Sugimoto, N. Maejima, A. Machida, T. Watanuki, H. Sawa
10.1107/S2052252517018334
[2017]
13.Electronic States and Dissipations of Vortex Core in Quantum Limit Investigated by Microwave Complex Resistivity Measurements on Pure FeSe Single Crystals.[arXiv:[cond-mat.supr-con],(2017)]Tatsunori OKADA, Yoshinori IMAI, Takahiro URATA, Yoichi TANABE, Katsumi TANIGAKI, and Atsutaka MAEDA
[2015]
14.Gap structure seen in magnetic penetration depth and flux-flow resistivity of 122 Fe-based superconductors.[Quantum Matter,4(4),(2015),308-313]A. Maeda, T. Okada, H. Takahashi, F. Nabeshima, Y. Imai, K. Kitagawa, K. Matsubayashi, Y. Uwatoko, M. Nakajima, A. Iyo, H. Eisaki
10.1166/qm.2015.1197
15.Exceptional suppression of flux-flow resistivity in FeSe0.4Te0.6 by back-flow from excess Fe atoms and Se/Te substitutions.[Phys. Rev. B,91(5),(2015),054510-]Okada, Tatsunori Nabeshima, Fuyuki Takahashi, Hideyuki Imai, Yoshinori Maeda, Atsutaka
10.1103/PhysRevB.91.054510
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[2014]
16.Synthesis, characterization, Hall effect and THz conductivity of epitaxial thin films of Fe chalcogenide superconductors.[Appl. Surf. Sci.,312,(2014),43-49]Maeda, A. Nabeshima, F. Takahashi, H. Okada, T. Imai, Y. Tsukada, I. Hanawa, M. Komiya, S. Ichinose, A.
10.1016/j.apsusc.2014.02.124
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17.Penetration depth and flux-flow resistivity measurements of BaFe2(As0.55P0.45)(2) single crystals.[Physica C,504,(2014),24-27]Okada, T. Imai, Y. Takahashi, H. Nakajima, M. Iyo, A. Eisaki, H. Maeda, A.
10.1016/j.physc.2014.03.025
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[2013]
18.Magnetic penetration depth and flux-flow resistivity measurements on NaFe0.97Co0.03As single crystals.[Physica C,494,(2013),109-112]Okada, T. Takahashi, H. Imai, Y. Kitagawa, K. Matsubayashi, K. Uwatoko, Y. Maeda, A.
10.1016/j.physc.2013.04.074
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19.Low energy excitations inside the vortex core of LiFe(As, P) single crystals investigated by microwave-surface impedance.[Physica C,484,(2013),27-30]Okada, T. Takahashi, H. Imai, Y. Kitagawa, K. Matsubayashi, K. Uwatoko, Y. Maeda, A.
10.1016/j.physc.2012.02.049
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[2012]
20.Investigation of the superconducting gap structure in SrFe2(As0.7P0.3)(2) by magnetic penetration depth and flux flow resistivity analysis.[Phys. Rev. B,86(14),(2012),144525-]Takahashi, Hideyuki Okada, Tatsunori Imai, Yoshinori Kitagawa, Kentaro Matsubayashi, Kazuyuki Uwatoko, Yoshiya Maeda, Atsutaka
10.1103/PhysRevB.86.144525
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