Teppei Yoshida

Affiliations: 
Stanford University, Palo Alto, CA 
 Professor, Kyoto University, Kyōto-shi, Kyōto-fu, Japan 
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"Teppei Yoshida"
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Publications

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Ootsuki D, Sawada K, Goto H, et al. (2020) Observation of metal to nonmagnetic insulator transition in polycrystalline RuP by photoemission spectroscopy Physical Review B. 101
Ootsuki D, Ishii H, Kudo K, et al. (2017) A novel one-dimensional electronic state at IrTe2 Surface Journal of the Physical Society of Japan. 86: 123704
Horio M, Adachi T, Mori Y, et al. (2016) Suppression of the antiferromagnetic pseudogap in the electron-doped high-temperature superconductor by protect annealing. Nature Communications. 7: 10567
Yoshida T, Ideta S, Shimojima T, et al. (2014) Anisotropy of the superconducting gap in the iron-based superconductor BaFe2(As(1-x)P(x))2. Scientific Reports. 4: 7292
Ootsuki D, Toriyama T, Kobayashi M, et al. (2014) Important roles of Te 5p and Ir 5d spin-orbit interactions on the multi-band electronic structure of triangular lattice superconductor Ir1-xPtxTe2 Journal of the Physical Society of Japan. 83
Yoshida T, Ideta SI, Nishi I, et al. (2014) Orbital character and electron correlation effects on two- and three-dimensional Fermi surfaces in KFe2As2 revealed by angle-resolved photoemission spectroscopy Frontiers of Physics. 2: 1-6
Shimojima T, Sonobe T, Malaeb W, et al. (2014) Pseudogap formation above the superconducting dome in iron-pnictides Physical Review B. 89: 45101
Ootsuki D, Pyon S, Kudo K, et al. (2013) Electronic structure reconstruction by orbital symmetry breaking in IrTe2 Journal of the Physical Society of Japan. 82: 93704-93704
Yoshida T, Hashimoto M, Vishik IM, et al. (2012) Pseudogap, Superconducting Gap, and Fermi Arc in High-Tc Cuprates Revealed by Angle-Resolved Photoemission Spectroscopy Journal of the Physical Society of Japan. 81: 11006-11006
Ideta S, Yoshida T, Fujimori A, et al. (2012) Energy scale directly related to superconductivity in high-Tccuprates: Universality from the temperature-dependent angle-resolved photoemission of Bi2Sr2Ca2Cu3O10+δ Physical Review B. 85
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