S
Saburo Takahashi
Researcher at Tohoku University
Publications - 204
Citations - 15283
Saburo Takahashi is an academic researcher from Tohoku University. The author has contributed to research in topics: Superconductivity & Spin Hall effect. The author has an hindex of 48, co-authored 204 publications receiving 13398 citations. Previous affiliations of Saburo Takahashi include Japan Atomic Energy Agency & Keio University.
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Anomalous spin orbit torques with large Rashba spin orbit coupling in epitaxial Pt/Co bilayers
TL;DR: In this article, the authors report an exceptionally large interfacial charge-to-spin conversion efficiency (i.e., the inverse Edelstein length Lamda_IEE of a few nanometers) in epitaxial (epi-) Pt/Co bilayers from a REE-induced magnetoresistance analysis using a new drift-diffusion model that incorporates both REE and bulk spin Hall effect.
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Size dependence of Peltier cooling in ferromagnet/Au nanopillars
S. Bosu,Yuya Sakuraba,Yuya Sakuraba,Takahide Kubota,Isaac Juarez-Acosta,Isaac Juarez-Acosta,Tomoko Sugiyama,Kesami Saito,Miguel Angel Olivares-Robles,Saburo Takahashi,Gerrit E. W. Bauer,Gerrit E. W. Bauer,Koki Takanashi +12 more
TL;DR: In this paper, an enhanced effective Peltier coefficient ΠCPP in resistance-current curves at small D (<120 nm was reported, which corresponds to a high cooling power of 43.6 MW/cm2.
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Anisotropic low-temperature heat transport in YBa2Cu3O6.9 single crystal
C. D. Bredl,K. Petersen,S. Arnold,G. Sparn,Frank Steglich,Saburo Takahashi,Masashi Tachiki,B. Runtsch,T. Wolf +8 more
TL;DR: In this paper, the authors reported measurements of the low-temperature thermal conductivity of YBa2Cu3O7−δ (δ≃ 0.1) single crystals (Tc=84 K) both parallel (κa, b) and perpendicular (κc) to the CuO2 planes.
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Modelling of the Peltier effect in magnetic multilayers
Isaac Juarez-Acosta,Miguel Angel Olivares-Robles,S. Bosu,S. Bosu,Yuya Sakuraba,Takahide Kubota,Saburo Takahashi,Koki Takanashi,Gerrit E. W. Bauer,Gerrit E. W. Bauer +9 more
TL;DR: In this article, the charge, spin, and heat currents in ferromagnetic metal trilayer structures were modeled in the two current model, taking into account bulk and interface thermoelectric properties as well as Joule heating.
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Dynamical Spin-Susceptibility in Heavy Fermion Systems
TL;DR: In this paper, the dynamical susceptibility of f-electrons in the Anderson lattice was investigated in connection with neutron inelastic-scattering experiments in heavy fermion compounds.