Session Details
[We-P]Spintronics, spin-related phenomena, novel spintronics materials and devices
Wed. Aug 19, 2026 2:00 PM - 3:45 PM JST
Wed. Aug 19, 2026 5:00 AM - 6:45 AM UTC
Wed. Aug 19, 2026 5:00 AM - 6:45 AM UTC
Kogakuin Univ. (Poster C4)(Poster)
[We-P-52]Two-Stage Nuclear Field Dynamics and Spatially Inhomogeneous Electron Localization in Bulk n-AlGaAs
〇Andong Shen1, Reina Kaji1, Satoru Adachi1 (1. Graduate School of Eng. Hokkaido Univ. (Japan))
[We-P-53]Control of Rashba Spin–Orbit Fields by Mn Composition Gradient–Induced Structural Inversion Asymmetry in (Ga,Mn)As
〇Taehee Lee1, APU KUMAR JANA1, Sanghoon Lee1, Xinyu Liu2, Jacek Furdyna2 (1. The Univ. of Korea (Korea), 2. The Univ. of Notre Dame (USA))
[We-P-54]Enhancing Spin Diffusion in GaAs Quantum Wells: The Role of Electron Density and Channel Width
〇Ben Werner Grobecker1, Alexander V. Poshakinskiy2, Sergiu Anghel1, Takaaki Mano3, Go Yusa4, Markus Betz1 (1. Tech. Univ. Dortmund (Germany), 2. The Barcelona Inst. of Sci. and Tech. (Spain), 3. Nat. Inst. for Materials Sci. (Japan), 4. Tohoku Univ. (Japan))
[We-P-55]Simultaneous Detection of Electron Spin Resonance and Electrically-Detected Magnetic Resonance in P-doped Si
〇Akira Fukuda1, Akinori Ohashi2, Hayato Ito2, Yuta Shimizu2, Tsunehiro Omija2, Yuya Ishikawa2, Masayoshi Mori3, Akira Oiwa3, Yutaka Fujii2 (1. Hyogo Medical University (Japan), 2. Fukui Univ. (Japan), 3. Osaka Univ. (Japan))
[We-P-56]Thickness Dependence of Superconducting Diode Efficiency in Fe(Se,Te)/FeTe Thin-Film Heterostructure Devices
〇Kaito - Arizono1, Kenshin - Inamura1, Junichi - Shiogai1,2, Tsutomu - Nojima3, Kouta - Kondou2, Jobu - Matsuno1,2 (1. Dep. of Phys., The Univ. of Osaka (Japan), 2. OTRI-Spin, The Univ. of Osaka (Japan), 3. IMR, Tohoku University (Japan))
[We-P-57]Low-Temperature Magnetotransport Properties of Fe-Doped ITO for Spin–Orbit Coupling Control
〇Akira Fujimoto1, Hiroki Kobayashi1, Yukiyasu Kashiwagi2, Araki Masuyama1 (1. Osaka Inst. of Tech. (Japan), 2. Osaka Res. Inst. of Indus. Sci. and Tech. (Japan))
[We-P-58]Interplay of superconductivity and ferromagnetism in epitaxially grown Al/InAs/(Ga,Fe)Sb Josephson junctions
〇Hirotaka Hara1, Lukas Baker2, Axel Leblanc2, Shingen Miura1, Keita Ishihara1, Melissa Mikalsen2, Patrick J. Strohbeen2, Jacob Issokson2, Masaaki Tanaka1,3,4, Javad Shabani2, Le Duc Anh1,3 (1. EEIS, The Univ. of Tokyo (Japan), 2. CQIP, New York Univ. (USA), 3. CSRN, The Univ. of Tokyo (Japan), 4. Nano Quine, The Univ. of Tokyo (Japan))
[We-P-59]Highly Efficient Spin-to-Charge Conversion in Bilayers of Light Elements
〇Yuki Kabata1, Masayuki Ishida1, Anh Duc Le1,2, Masaaki Tanaka1,2 (1. The Univ. of Tokyo (Japan), 2. Center of Spintronics Research Network (Japan))
[We-P-60]Manipulation of Van der Waals Magnetic Materials Fe3GaTe2 by Magnetic Field and Local Pressure
〇Wen-Chin Lin1 (1. National Taiwan Normal University (Taiwan))
[We-P-61]Electrical Detection of Spin Resonance with Time Resolution in a Two-Dimensional Electron System
〇Georgy A. Nikolaev1,2, Oleg Orlov1,2, Sofya Andreeva3,1, Yana Fedotova1, Alina Khisameeva1, Anton Shchepetilnikov1,3, Igor Kukushkin1 (1. Osipyan Inst. of Solid State Physics (Russia), 2. Moscow Inst. of Physics and Technology (Russia), 3. HSE Univ. (Russia))
[We-P-62]Probing spin-polarized Van Hove Singularity in non-coplanar triple-Q antiferomagnetic ordered Van Der Waal magnet by using sp-STM
〇Muskan Zakirhusen Sande1,3, Alexina Ollier1,2, Valeria Sheina1,2, Seik Pak5, Woonghee Cho4, Pyeongjae Park6, Andreas J Heinrich1,4, Je-Geun Park4, MoonJib Park5, WonJun Jang1,2 (1. IBS Center for Quantum Nanoscience (Korea), 2. Ewha Womans University, Seoul (Korea), 3. Department of Physics, Ewha Womans University, Seoul (Korea), 4. Department of Physics and Astronomy, Seoul National University, Seoul (Korea), 5. Department of Physics, Hanyang University, Seoul (Korea), 6. Materials Science and Technology Division, Oak Ridge National Laboratory, Tennessee (USA))
[We-P-63]Efficient Spin–Charge Conversion in Ferromagnetic Metal Fe / Topological Dirac Semimetal α-Sn Heterostructures Modified by Magnetic Proximity Effect
〇Masayuki Ishida1, Soichiro Fukuoka1, Takahiro Chiba3,4, Yohei Kota5, Masaaki Tanaka1,2,6, Anh Duc Le1,2 (1. The University of Tokyo (Japan), 2. Center for Spintronics Research Network (Japan), 3. Yamagata Univ. (Japan), 4. Tohoku Univ. (Japan), 5. NIT Fukushima College (Japan), 6. Institute for Nano Quantum Information Electronics (NanoQuine) (Japan))
