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論文 TSV

2023
  1. Yusuke Kozuka, Taisuke T. Sasaki, Terumasa Tadano, Jun Fujioka. Epitaxy and transport properties of alkali-earth palladate thin films. Science and Technology of Advanced Materials. 24 [1] (2023) 2265431 10.1080/14686996.2023.2265431 Open Access
  2. Erik Fransson, Petter Rosander, Fredrik Eriksson, J. Magnus Rahm, Terumasa Tadano, Paul Erhart. Limits of the phonon quasi-particle picture at the cubic-to-tetragonal phase transition in halide perovskites. Communications Physics. 6 [1] (2023) 173 10.1038/s42005-023-01297-8 Open Access
  3. 増木 亮太, 野本 拓也, 有田 亮太郎, 只野 央将. 非調和フォノン理論に基づいた有限温度における結晶構造の第一原理計算. 固体物理. 58 [No.8 (通巻690号)] (2023) 419-432
  4. Xinyi He, Shigeru Kimura, Takayoshi Katase, Terumasa Tadano, Satoru Matsuishi, Makoto Minohara, Hidenori Hiramatsu, Hiroshi Kumigashira, Hideo Hosono, Toshio Kamiya. Inverse‐Perovskite Ba3BO (B = Si and Ge) as a High Performance Environmentally Benign Thermoelectric Material with Low Lattice Thermal Conductivity. Advanced Science. (2023) 2307058 10.1002/advs.202307058 Open Access
  5. 只野 央将. 非調和フォノン理論が拓く有限温度物性の第一原理計算. 日本物理学会誌. 78 [9] (2023) 542-547 10.11316/butsuri.78.9_542
  6. Atsushi Togo, Laurent Chaput, Terumasa Tadano, Isao Tanaka. Implementation strategies in phonopy and phono3py. Journal of Physics: Condensed Matter. 35 [35] (2023) 353001 10.1088/1361-648x/acd831 Open Access
  7. Masao Morishita, Taichi Abe, Tadakatsu Ohkubo, Terumasa Tadano, Hiroaki Yamamoto, Ai Nozaki, Hikaru Miyazaki. Magnetic characterization of Sm(Fe1-, Cox)11Ti (x = 0, 0.1) determined by heat-capacity measurement from very low to high temperatures. Thermochimica Acta. 727 (2023) 179573 10.1016/j.tca.2023.179573
  8. Ivan Kurniawan, Yoshio Miura, Guangzong Xing, Terumasa Tadano, Kazuhiro Hono. Theoretical study of the effect of lattice dynamics on the damping constant of FePt at finite temperature. Physical Review B. 108 [9] (2023) 094426 10.1103/physrevb.108.094426
  9. Kouta Kazama, Masato Sakano, Kohei Yamagami, Takuo Ohkochi, Kyoko Ishizaka, Terumasa Tadano, Yusuke Kozuka, Hidetoshi Yoshizawa, Yoshihiro Tsujimoto, Kazunari Yamaura, Jun Fujioka. Charge transport and thermopower in the electron-doped narrow gap semiconductor Ca1−xLaxPd3O4. Physical Review Materials. 7 [8] (2023) 085402 10.1103/physrevmaterials.7.085402 Open Access
  10. Guangzong Xing, Yoshio Miura, Terumasa Tadano. First-principles prediction of phase transition of YCo5 from self-consistent phonon calculations. Physical Review B. 108 [1] (2023) 014304 10.1103/physrevb.108.014304
  11. Xinyi He, Seiya Nomoto, Takehito Komatsu, Takayoshi Katase, Terumasa Tadano, Suguru Kitani, Hideto Yoshida, Takafumi Yamamoto, Hiroshi Mizoguchi, Keisuke Ide, Hidenori Hiramatsu, Hitoshi Kawaji, Hideo Hosono, Toshio Kamiya. Hydride Anion Substitution Boosts Thermoelectric Performance of Polycrystalline SrTiO3 via Simultaneous Realization of Reduced Thermal Conductivity and High Electronic Conductivity. Advanced Functional Materials. 33 [28] (2023) 2213144 10.1002/adfm.202213144 Open Access
  12. Dhruba B. Khadka, Yasuhiro Shirai, Masatoshi Yanagida, Terumasa Tadano, Kenjiro Miyano. Alleviating Defect and Oxidation in Tin Perovskite Solar Cells Using a Bidentate Ligand. Chemistry of Materials. 35 [11] (2023) 4250-4258 10.1021/acs.chemmater.3c00243
  13. Chen Shen, Mian Dai, Xingxing Xiao, Niloofar Hadaeghi, Wenjie Xie, Anke Weidenkaff, Terumasa Tadano, Hongbin Zhang. Impact of quartic anharmonicity on lattice thermal transport in EuTiO3: A comparative theoretical and experimental investigation. Materials Today Physics. 34 (2023) 101059 10.1016/j.mtphys.2023.101059
  14. Ryota Masuki, Takuya Nomoto, Ryotaro Arita, Terumasa Tadano. Full optimization of quasiharmonic free energy with an anharmonic lattice model: Application to thermal expansion and pyroelectricity of wurtzite GaN and ZnO. Physical Review B. 107 [13] (2023) 134119 10.1103/physrevb.107.134119
  15. Zhongxu Hu, Mari Hiramatsu, Xinyi He, Takayoshi Katase, Terumasa Tadano, Keisuke Ide, Hidenori Hiramatsu, Hideo Hosono, Toshio Kamiya. Reversible Thermal Conductivity Modulation of Non-equilibrium (Sn1–xPbx)S by 2D–3D Structural Phase Transition above Room Temperature. ACS Applied Energy Materials. 6 [6] (2023) 3504-3513 10.1021/acsaem.3c00060 Open Access
  16. Tomohito Amano, Tamio Yamazaki, Ryosuke Akashi, Terumasa Tadano, Shinji Tsuneyuki. Lattice dielectric properties of rutile TiO2 : First-principles anharmonic self-consistent phonon study. Physical Review B. 107 [9] (2023) 094305 10.1103/physrevb.107.094305 Open Access
2022
  1. Ryota Masuki, Takuya Nomoto, Ryotaro Arita, Terumasa Tadano. Ab initio structural optimization at finite temperatures based on anharmonic phonon theory: Application to the structural phase transitions of BaTiO3. Physical Review B. 106 [22] (2022) 224104 10.1103/physrevb.106.224104
  2. Dhruba B. Khadka, Yasuhiro Shirai, Masatoshi Yanagida, Terumasa Tadano, Kenjiro Miyano. Interfacial Embedding for High‐Efficiency and Stable Methylammonium‐Free Perovskite Solar Cells with Fluoroarene Hydrazine. Advanced Energy Materials. 12 [38] (2022) 2202029 10.1002/aenm.202202029 Open Access
  3. Terumasa Tadano, Wissam A. Saidi. First-Principles Phonon Quasiparticle Theory Applied to a Strongly Anharmonic Halide Perovskite. Physical Review Letters. 129 [18] (2022) 185901 10.1103/physrevlett.129.185901
  4. Kenichi Cho, Hirokazu Tahara, Takumi Yamada, Hidekatsu Suzuura, Terumasa Tadano, Ryota Sato, Masaki Saruyama, Hideki Hirori, Toshiharu Teranishi, Yoshihiko Kanemitsu. Exciton–Phonon and Trion–Phonon Couplings Revealed by Photoluminescence Spectroscopy of Single CsPbBr3 Perovskite Nanocrystals. Nano Letters. 22 [18] (2022) 7674-7681 10.1021/acs.nanolett.2c02970
  5. Atsushi Togo, Hiroyuki Hayashi, Terumasa Tadano, Satoshi Tsutsui, Isao Tanaka. LO-mode phonon of KCl and NaCl at 300 K by inelastic x-ray scattering measurements and first principles calculations. Journal of Physics: Condensed Matter. 34 [36] (2022) 365401 10.1088/1361-648x/ac7b01 Open Access
  6. Yusaku Nishimura, Xinyi He, Takayoshi Katase, Terumasa Tadano, Keisuke Ide, Suguru Kitani, Kota Hanzawa, Shigenori Ueda, Hidenori Hiramatsu, Hitoshi Kawaji, Hideo Hosono, Toshio Kamiya. Electronic and Lattice Thermal Conductivity Switching by 3D−2D Crystal Structure Transition in Nonequilibrium (Pb 1− x Sn x )Se. Advanced Electronic Materials. 8 [9] (2022) 2200024 10.1002/aelm.202200024
  7. Masato Ohnishi, Terumasa Tadano, Shinji Tsuneyuki, Junichiro Shiomi. Anharmonic phonon renormalization and thermal transport in the type-I Ba8Ga16Sn30 clathrate from first principles. Physical Review B. 106 [2] (2022) 024303 10.1103/physrevb.106.024303
  8. Xinyi He, Haoyun Zhang, Takumi Nose, Takayoshi Katase, Terumasa Tadano, Keisuke Ide, Shigenori Ueda, Hidenori Hiramatsu, Hideo Hosono, Toshio Kamiya. Degenerated Hole Doping and Ultra‐Low Lattice Thermal Conductivity in Polycrystalline SnSe by Nonequilibrium Isovalent Te Substitution. Advanced Science. 9 [13] (2022) 2105958 10.1002/advs.202105958 Open Access
  9. Pol Torres, Stephen Wu, Shenghong Ju, Chang Liu, Terumasa Tadano, Ryo Yoshida, Junichiro Shiomi. Descriptors of intrinsic hydrodynamic thermal transport: screening a phonon database in a machine learning approach. Journal of Physics: Condensed Matter. 34 [13] (2022) 135702 10.1088/1361-648x/ac49c9
  10. Guangzong Xing, Yoshio Miura, Terumasa Tadano. Lattice dynamics and its effects on magnetocrystalline anisotropy energy of pristine and hole-doped YCo5 from first principles. Physical Review B. 105 [10] (2022) 104427 10.1103/physrevb.105.104427
  11. Ryota Masuki, Takuya Nomoto, Ryotaro Arita, Terumasa Tadano. Anharmonic Grüneisen theory based on self-consistent phonon theory: Impact of phonon-phonon interactions neglected in the quasiharmonic theory. Physical Review B. 105 [6] (2022) 064112 10.1103/physrevb.105.064112
2021
  1. Takayoshi Katase, Xinyi He, Terumasa Tadano, Jan M. Tomczak, Takaki Onozato, Keisuke Ide, Bin Feng, Tetsuya Tohei, Hidenori Hiramatsu, Hiromichi Ohta, Yuichi Ikuhara, Hideo Hosono, Toshio Kamiya. Breaking of Thermopower–Conductivity Trade‐Off in LaTiO 3 Film around Mott Insulator to Metal Transition. Advanced Science. 8 [23] (2021) 2102097 10.1002/advs.202102097 Open Access
  2. Masatoshi Kimura, Xinyi He, Takayoshi Katase, Terumasa Tadano, Jan M. Tomczak, Makoto Minohara, Ryotaro Aso, Hideto Yoshida, Keisuke Ide, Shigenori Ueda, Hidenori Hiramatsu, Hiroshi Kumigashira, Hideo Hosono, Toshio Kamiya. Large phonon drag thermopower boosted by massive electrons and phonon leaking in LaAlO3/LaNiO3/LaAlO3 heterostructure. Nano Letters. 21 [21] (2021) 9240-9246 10.1021/acs.nanolett.1c03143
  3. Keisuke Masuda, Terumasa Tadano, Yoshio Miura. Crucial role of interfacial s−d exchange interaction in the temperature dependence of tunnel magnetoresistance. Physical Review B. 104 [18] (2021) L180403 10.1103/physrevb.104.l180403 Open Access
  4. Kunie Ishioka, Terumasa Tadano, Masatoshi Yanagida, Yasuhiro Shirai, Kenjiro Miyano. Anharmonic organic cation vibrations in the hybrid lead halide perovskite CH3NH3PbI3. Physical Review Materials. 5 [10] (2021) 105402 10.1103/physrevmaterials.5.105402
  5. Kenichi Cho, Takumi Yamada, Hirokazu Tahara, Terumasa Tadano, Hidekatsu Suzuura, Masaki Saruyama, Ryota Sato, Toshiharu Teranishi, Yoshihiko Kanemitsu. Luminescence Fine Structures in Single Lead Halide Perovskite Nanocrystals: Size Dependence of the Exciton–Phonon Coupling. Nano Letters. 21 [17] (2021) 7206-7212 10.1021/acs.nanolett.1c02122
  6. Guangzong Xing, Takahiro Ishikawa, Yoshio Miura, Takashi Miyake, Terumasa Tadano. Lattice dynamics effects on finite-temperature stability of R1−Fe (R = Y, Ce, Nd, Sm, and Dy) alloys from first principles. Journal of Alloys and Compounds. 874 (2021) 159754 10.1016/j.jallcom.2021.159754
  7. Maxime Charlebois, Jean-Baptiste Morée, Kazuma Nakamura, Yusuke Nomura, Terumasa Tadano, Yoshihide Yoshimoto, Youhei Yamaji, Takumi Hasegawa, Kazuyuki Matsuhira, Masatoshi Imada. Ab initio derivation of low-energy Hamiltonians for systems with strong spin-orbit interaction: Application to Ca5Ir3O12. Physical Review B. 104 [7] (2021) 075153 10.1103/physrevb.104.075153
  8. Takahiro Ishikawa, Taro Fukazawa, Guangzong Xing, Terumasa Tadano, Takashi Miyake. Evolutionary search for cobalt-rich compounds in the yttrium-cobalt-boron system. Physical Review Materials. 5 [5] (2021) 054408 10.1103/physrevmaterials.5.054408 Open Access
  9. Shenghong Ju, Ryo Yoshida, Chang Liu, Stephen Wu, Kenta Hongo, Terumasa Tadano, Junichiro Shiomi. Exploring diamondlike lattice thermal conductivity crystals via feature-based transfer learning. Physical Review Materials. 5 [5] (2021) 053801 10.1103/physrevmaterials.5.053801
  10. Kazuma Nakamura, Yoshihide Yoshimoto, Yusuke Nomura, Terumasa Tadano, Mitsuaki Kawamura, Taichi Kosugi, Kazuyoshi Yoshimi, Takahiro Misawa, Yuichi Motoyama. RESPACK: An ab initio tool for derivation of effective low-energy model of material. Computer Physics Communications. 261 (2021) 107781 10.1016/j.cpc.2020.107781 Open Access
  11. Takayoshi Katase, Yudai Takahashi, Xinyi He, Terumasa Tadano, Keisuke Ide, Hideto Yoshida, Shiro Kawachi, Jun-ichi Yamaura, Masato Sasase, Hidenori Hiramatsu, Hideo Hosono, Toshio Kamiya. Reversible 3D-2D structural phase transition and giant electronic modulation in nonequilibrium alloy semiconductor, lead-tin-selenide. Science Advances. 7 [12] (2021) 10.1126/sciadv.abf2725 Open Access
  12. Shoya Kawano, Terumasa Tadano, Satoshi Iikubo. Effect of Halogen Ions on the Low Thermal Conductivity of Cesium Halide Perovskite. The Journal of Physical Chemistry C. 125 [1] (2021) 91-97 10.1021/acs.jpcc.0c08324
2020
  1. 野村 悠祐, 平山 元昭, 北谷 基治, 只野 央将, 有田 亮太郎. ニッケル酸化物新超伝導体の発見:現状と展望. 固体物理. (2020) 491-503
  2. 只野 央将. 非調和フォノン物性の第一原理計算. OYO BUTURI. (2020) 35-39
  3. 只野 央将, 是常隆, 有田 亮太郎. 原子核の量子ゆらぎが支える高圧下LaH10の高温超伝導. 固体物理. (2020) 425-434
  4. Zezhu Zeng, Shasha Li, Terumasa Tadano, Yue Chen. Anharmonic lattice dynamics and thermal transport of monolayer InSe under equibiaxial tensile strains. Journal of Physics: Condensed Matter. 32 [47] (2020) 475702 10.1088/1361-648x/aba315
  5. Takuya Tanimoto, Koichiro Suekuni, Taiki Tanishita, Hidetomo Usui, Terumasa Tadano, Taiga Kamei, Hikaru Saito, Hirotaka Nishiate, Chul Ho Lee, Kazuhiko Kuroki, Michitaka Ohtaki. Enargite Cu 3 PS 4 : A Cu–S‐Based Thermoelectric Material with a Wurtzite‐Derivative Structure. Advanced Functional Materials. 30 [22] (2020) 2000973 10.1002/adfm.202000973
  6. Yu-Ning Wu, Wissam A. Saidi, Jeffrey K. Wuenschell, Terumasa Tadano, Paul Ohodnicki, Benjamin Chorpening, Yuhua Duan. Anharmonicity Explains Temperature Renormalization Effects of the Band Gap in SrTiO3. The Journal of Physical Chemistry Letters. 11 [7] (2020) 2518-2523 10.1021/acs.jpclett.0c00183
  7. Ion Errea, Francesco Belli, Lorenzo Monacelli, Antonio Sanna, Takashi Koretsune, Terumasa Tadano, Raffaello Bianco, Matteo Calandra, Ryotaro Arita, Francesco Mauri, José A. Flores-Livas. Quantum crystal structure in the 250-kelvin superconducting lanthanum hydride. Nature. 578 [7793] (2020) 66-69 10.1038/s41586-020-1955-z
  8. Motoaki Hirayama, Terumasa Tadano, Yusuke Nomura, Ryotaro Arita. Materials design of dynamically stable d9 layered nickelates. Physical Review B. 101 [7] (2020) 075107 10.1103/physrevb.101.075107
2019
  1. Terumasa TADANO, Shinji TSUNEYUKI. Ab initio prediction of structural phase-transition temperature of SrTiO3 from finite-temperature phonon calculation. Journal of the Ceramic Society of Japan. 127 [6] (2019) 404-408 10.2109/jcersj2.18216 Open Access
  2. Yusuke Nomura, Motoaki Hirayama, Terumasa Tadano, Yoshihide Yoshimoto, Kazuma Nakamura, Ryotaro Arita. Formation of a two-dimensional single-component correlated electron system and band engineering in the nickelate superconductor NdNiO2. Physical Review B. 100 [20] (2019) 205138 10.1103/physrevb.100.205138
  3. Terumasa Tadano, Yusuke Nomura, Masatoshi Imada. Ab initio derivation of an effective Hamiltonian for the La2CuO4/La1.55Sr0.45CuO4 heterostructure. Physical Review B. 99 [15] (2019) 155148 10.1103/physrevb.99.155148
  4. Yusuke Oba, Terumasa Tadano, Ryosuke Akashi, Shinji Tsuneyuki. First-principles study of phonon anharmonicity and negative thermal expansion in ScF3. Physical Review Materials. 3 [3] (2019) 033601 10.1103/physrevmaterials.3.033601 Open Access
2018
  1. Terumasa Tadano, Shinji Tsuneyuki. First-Principles Lattice Dynamics Method for Strongly Anharmonic Crystals. Journal of the Physical Society of Japan. 87 [4] (2018) 041015 10.7566/jpsj.87.041015 Open Access
  2. Terumasa Tadano, Shinji Tsuneyuki. Quartic Anharmonicity of Rattlers and Its Effect on Lattice Thermal Conductivity of Clathrates from First Principles. Physical Review Letters. 120 [10] (2018) 105901 10.1103/physrevlett.120.105901 Open Access
2017
  1. Payam Norouzzadeh, Jerzy S. Krasinski, Terumasa Tadano. Thermal conductivity of type-I, type-II, and type-VIII pristine silicon clathrates: A first-principles study. Physical Review B. 96 [24] (2017) 245201 10.1103/physrevb.96.245201 Open Access
  2. Andrew Rohskopf, Hamid R. Seyf, Kiarash Gordiz, Terumasa Tadano, Asegun Henry. Empirical interatomic potentials optimized for phonon properties. npj Computational Materials. 3 [1] (2017) 27 10.1038/s41524-017-0026-y Open Access
  3. 只野 央将, 常行真司. 第一原理からの非調和フォノンと格子熱伝導. 固体物理. 52 [11] (2017) 637-646

書籍 TSV

2021
  1. 只野 央将. 格子熱伝導の基礎理論と第一原理シミュレー ション. 株式会社 エヌ・ティー・エス, 2021, 9.
2017
  1. 只野 央将. 第一原理フォノン伝導計算. フォノンエンジニアリング マイクロ・ナノスケールの次世代熱制御技術. , 2017, 117-129.

会議録 TSV

口頭発表 TSV

2024
  1. 只野 央将. 第一原理計算によるホイスラー合金データベースの構築と応用 . スーパーコンピュータ「富岳」成果創出加速プログラムDDCoMS 公開シンポジウム. 2024
  2. 山根 和樹, 松本 凌, 只野 央将, 寺嶋 健成, 新名 亨, 入舩 徹男, 櫻井 裕也, 高野 義彦. 新規超伝導体In3−xS4における合成条件の最適化. 第71回応用物理学会春季学術講演会. 2024
  3. TADANO, Terumasa. Anharmonic Phonon Theory in Condensed Matter Physics with applications based on DFT. DFT2024 (RIKEN Symposium Second Workshop on Fundamentals in Density Functional Theory). 2024 招待講演
2023
  1. 只野 央将. エラストスピン現象の理論的解釈. 第1回ナノエラストロニクス・ワークショップ. 2023
  2. 山根 和樹, 松本 凌, 只野 央将, 寺嶋 健成, 櫻井 裕也, 高野 義彦. 加熱機能付き電極導入型DACを用いた新規超伝導体In3−xS4 (Tc = 16 K) の高圧合成. 第64回高圧討論会. 2023
  3. 松本 凌, 山根 和樹, 寺嶋 健成, 只野 央将, 永田 響, 新名 亨, 入舩 徹男, 櫻井 裕也, 高野 義彦. 高圧合成および物性測定機能付きDACを用いたM3Ch4系超伝導体の探索. 第64回高圧討論会. 2023
  4. TADANO, Terumasa. First-principles quasiparticle phonon calculation of anharmonic solids. ASIAN-24 (The 24th Asian Workshop on First-Principles Electronic Structure Calculations). 2023
  5. XING, Guangzong, MASUDA, Keisuke, TADANO, Terumasa, MIURA, Yoshio. High-throughput Calculation of Transverse Transport Properties in Heusler Compounds. JSAP Autumn Meeting 2023. 2023
  6. 山根 和樹, 松本 凌, 只野 央将, 寺嶋 健成, 櫻井 裕也, 高野 義彦. 高圧合成とその場電気抵抗測定による新規超伝導体In3-xS4(Tc=16 K)の発見. 日本物理学会第78回年次大会. 2023
  7. 只野 央将. ハライドペロブスカイトにおける高次非調和効果の第一原理解析. 日本物理学会 第78回年次大会. 2023
  8. XING, Guangzong, MASUDA, Keisuke, TADANO, Terumasa, MIURA, Yoshio. High-throughput Calculation of Transverse Transport Properties in Heusler Compounds. Intermag 2023. 2023
  9. MASUDA, Keisuke, TADANO, Terumasa, MIURA, Yoshio. Theory for Temperature Dependence of Tunnel Magnetoresistance: Crucial Role of Interfacial s-d Exchange Interaction. Intermag 2023. 2023
  10. 山根 和樹, 松本 凌, 只野 央将, 寺嶋 健成, 高野 義彦. 高圧合成とその場電気抵抗測定によるIn-S系超伝導体の発見. 第70回応用物理学会春季学術講演会. 2023
2022
  1. Xinyi He, Zhang Haoyun, Takumi Nose, Takayoshi Katase, TADANO, Terumasa, Keisuke Ide, Hidenori Hiramatsu, Hideo Hosono, Toshio Kamiya. Degenerated hole doping and enhanced thermoelectric figure-of-merit ZT in layered SnSe by isovalent Te ion substitution. 第83回応用物理学会秋季学術講演会. 2022
  2. 片瀬 貴義, 西村 優作, ホ シンイ, 只野 央将, 井手 啓介, 気谷 卓, 半沢 幸太, 平松 秀典, 川路 均, 細野 秀雄, 神谷 利夫. 準安定(Pb1-xSnx)Se固溶体の2次元-3次元構造転移に伴う熱伝導率変調. 第83回応用物理学会秋季学術講演会. 2022
  3. 張 健一, 山田 琢允, 田原 弘量, 只野 央将, 鈴浦 秀勝, 猿山 雅亮, 佐藤 良太, 寺西 利治, 金光 義彦. ペロブスカイトナノ粒子のエキシトン-フォノン相互作用. 第83回応用物理学会秋季学術講演会. 2022
  4. 小塚 裕介, 藤岡 淳, 佐々木 泰祐, 只野 央将. 結晶場狭ギャップ半導体Pd酸化物の薄膜作製. 2022年 第83回応用物理学会秋季学術講演会. 2022
  5. 松本 凌, 山本 貴史, 只野 央将, 山根 和樹, 寺嶋 健成, 高野 義彦. AlB2構造を有するYB2における圧力誘起超伝導. 日本物理学会 2022年秋季大会. 2022
  6. 増田 啓介, 只野 央将, 三浦 良雄. トンネル磁気抵抗効果の温度変化に対する新たな物理描像:界面s-d交換相互作用の重要性. 第46回日本磁気学会学術講演会 https://www.magnetics.jp/kouenkai/2022/. 2022
  7. TADANO, Terumasa. First-principles calculations of phonons and crystal structures at finite temperatures. Recent Progress in Thermal Transport Theory and Experiments https://indico.ictp.it/event/9794/overview. 2022 招待講演
  8. 只野 央将. 自己無撞着フォノン理論による構造相転移温度の第一原理計算. 物性研究所スパコン共同利用・CCMS合同研究会「計算物質科学の新展開」  https://mdcl.issp.u-tokyo.ac.jp/scc/news/3214. 2022 招待講演
  9. 石岡 邦江, 只野 央将, 柳田 真利, 白井 康裕, 宮野 健次郎. ハイブリッド鉛ハライドペロブスカイトの非調和的な有機カチオン振動. 2022年 第69回応用物理学会春季学術講演会. 2022
  10. 張 健一, 山田 琢允, 田原 弘量, 只野 央将, 鈴浦 秀勝, 猿山 雅亮, 佐藤 良太, 寺西 利治, 金光 義彦. ハライドペロブスカイトナノ粒子における励起子格子相互作用. 2022年第69回応用物理学会春期学術講演会. 2022
  11. MASUDA, Keisuke, TADANO, Terumasa, MIURA, Yoshio. New physical origin of the temperature dependence of tunnel magnetoresistance: Crucial importance of interfacial s-d exchange interaction. 2022年第69回応用物理学会春季学術講演会. 2022
  12. 石岡 邦江, 只野 央将, 柳田 真利, 白井 康裕, 宮野 健次郎. バンド端励起したハイブリッド鉛ハライドペロブスカイトの非調和的な有機カチオン振動. 日本物理学会第77回年次大会(2022年). 2022
  13. TADANO, Terumasa. First-principles study of thermal and optical properties of perovskite materials. 日本物理学会第77回年次大会/https://www.jps.or.jp/activities/meetings/annual/annual-index.php. 2022
  14. Ryota Masuki, Takuya Nomoto, Ryotaro Arita, TADANO, Terumasa. Structural optimization at finite temperature based on anharmonic phonon theory. APS March Meeting 2022/https://march.aps.org. 2022
  15. Martina Basini, Matteo Pancaldi, Bjorn Wehinger, Mattia Udina, TADANO, Terumasa, Matthias Hoffman, Alexander V. Balatsky, Stefano Bonetti. THz electric field-driven dynamical multiferroicity in paraelectric SrTiO3. APS March Meeting 2022/https://march.aps.org. 2022 招待講演
  16. XING, Guangzong, MIURA, Yoshio, TADANO, Terumasa. Lattice dynamics effects on magnetocrystalline anisotropy energy of YCo5 from first principles. APS March Meeting https://march.aps.org/. 2022
2021
  1. Xinyi He, Haoyun Zhang, Takumi Nose, Takayoshi Katase, TADANO, Terumasa, Keisuke Ide, Hidenori Hiramatsu, Hideo Hosono, Toshio Kamiya. Enhanced thermoelectric figure-of-merit ZT in layered SnSe doped with isovalent Te and its origin clarified by density functional theory. MRM2021 / https://mrm2021.jmru.org. 2021
  2. 只野 央将, シン グアンゾン, 石河 孝洋, 三浦 良雄, 三宅 隆. 永久磁石材料におけるフォノンと有限温度磁性の理論解析. MagHEM・ESICMM合同成果報告会. 2021
  3. 只野 央将. Extending first-principles structural optimization method to finite temperatures. APW-RIKEN-Tsinghua-Kavli workshop “Highlights on condensed matter physics”   https://cems.riken.jp/2021apw/#overview. 2021 招待講演
  4. 只野 央将, W. A. Saidi. フォノン−フォノン散乱を考慮したフォノン準粒子バンドの第一原理計算. 日本物理学会 2021年秋季大会/https://www.jps.or.jp/activities/meetings/autumn/autumn_index.php. 2021
  5. Kenichi Cho, Takumi Yamada, Hirokazu Tahara, 只野 央将, Hidekatsu Suzuura, Masaki Saruyama, Ryota Sato, Toshiharu Teranishi, Yoshihiko Kanemitsu. ハロゲン化鉛ペロブスカイトナノ粒子の励起子格子相互作用:粒子サイズ依存性. 日本物理学会 2021年秋期大会 / https://www.jps.or.jp/activities/meetings/autumn/autumn_index.php. 2021
  6. 増木 亮太, 野本 拓也, 有田 亮太郎, 只野 央将. 熱膨張とフォノン振動数シフト計算における準調和近似の正当性と適用限界. 日本物理学会 2021年秋季大会 / https://www.jps.or.jp/activities/meetings/autumn/autumn_index.php. 2021
2020
  1. 只野 央将. 高圧下ランタン水素化物LaHxにおける原子核の量子ゆらぎと超伝導. 基研研究会「高温超伝導・非従来型超伝導研究の最前線:多様性と普遍性」. 2020 招待講演
  2. Motoaki Hirayama, Yusuke Nomura, 只野 央将, Yoshihide Yoshimoto, Kazuma Nakamura, Ryotaro Arita. NdNiO2における自己ドープ型2次元単軌道強相関系の形成. 日本物理学会第75回年次大会. 2020
  3. 只野 央将, Motoaki Hirayama, Yusuke Nomura, Ryotaro Arita. 第一原理計算による新たなd9層状ニッケル酸化物の理論設計. 日本物理学会第75回年次大会. 2020
  4. 高橋 雄大, 片瀬 貴義, ホ シンイ, 只野 央将, 井手 啓介, 吉田 秀人, 河智 史郎, 山浦 淳一, 笹瀬 雅人, 平松 秀典, 細野 秀雄, 神谷 利夫. 準安定(Pb1-xSnx)Se薄膜の2次元-3次元構造転移と巨大電子物性変調. 第68回応用物理学会春期学術講演会. 2020
  5. Y. Higuchi, T. Katase, 只野 央将, J. Fujioka, K. Ide, H. Hiramatsu, H. Hosono, T. Kamiya. 熱起電力と導電率のトレードオフの関係を破る酸化物熱電材料LaNiO3の高出力特性. 第67回応用物理学会春期学術講演会. 2020
  6. 河野 翔也, 飯久保 智, 只野 央将. 無機ハライドペロブスカイトの格子振動に関する第一原理計算. 第67回応用物理学会春期学術講演会. 2020
  7. 末國 晃一郎, 谷本 拓哉, 只野 央将, 亀井 大雅, 斎藤 光, 西当 弘隆, 李 哲虎, 大瀧 倫卓. エナーガイトCu3PS4のフォノン構造と格子熱伝導率. 第67回応用物理学会春期学術講演会. 2020
  8. Motoaki Hirayama, TADANO, Terumasa, Yusuke Nomura, Ryotaro Arita. Nickelate superconductivity —A systematic computational design of dynamically stable d9 nickelates. APS March Meeting 2020. 2020
  9. Yusuke Nomura, Motoaki Hirayama, TADANO, Terumasa, Yoshihide Yoshimoto, Kazuma Nakamura, Ryotaro Arita. Nickelate superconductivity —Formation of self-doped 2D single-orbital correlated electron systems in NdNiO2. APS March Meeting 2020. 2020
  10. Daisuke Hirai, TADANO, Terumasa, Sakyo Hirose, First-principles finite-temperature phonon calculation of BaTiO3. FERRO2020. 2020
  11. 只野 央将. 永久磁石材料のフォノン計算. ポスト「京」重点課題(7) サブ課題D研究会 https://ccms.issp.u-tokyo.ac.jp/event/2627. 2020
  12. T. Katase, Y. Higuchi, TADANO, Terumasa, J. Fujioka, K. Ide, H. Hosono, H. Hiramatsu, T. Kamiya. Power-factor enhancement by breaking trade-off relation of electrical conductivity and thermopower in strain-controlled transition metal oxide. 第58回セラミックス基礎科学討論会. 2020
2019
  1. TADANO, Terumasa. Phonon lifetime and thermal transport in complex thermoelectric clathrates and tetrahedrites from first principles. Phonon lifetime from disordered to complex systems: Measurement and Interpretation. 2019 招待講演
  2. 平井 大介, 廣瀬 左京, TADANO, Terumasa. First-principles prediction of structural phase transition temperature of BaTiO3 based on finite-temperature phonon calculation. MRM2019. 2019
  3. TADANO, Terumasa. Development and application of ALAMODE software. 5th Workshop on ab initio phonon calculations. 2019 招待講演
  4. SUEKUNI, Koichiro, OHTA, Michihiro, LEE, Chul-Ho, NISHIBORI, Eiji, TADANO, Terumasa, UMEO, Kazunori, TAKABATAKE, Toshiro, GUILMEAU, Emmanuel, OHTAKI, Michitaka. Strong phonon scattering in thermoelectric colusites and tetrahedrites. PACRIM13. 2019 招待講演
  5. 野村 悠祐, 平山 元昭, 只野 央将, 吉本 芳英, 中村 和麿, 有田 亮太郎. ニッケル酸化物超伝導体NdNiO2における強相関電子系形成とそのバンドエンジニアリング. 電子相関が生み出す超伝導現象の未解決問題と新しい潮流. 2019
  6. TADANO, Terumasa, 末國 晃一郎, 末國 晃一郎. Anharmonicity and two-channel phonon transport in thermoelectric tetrahedrite. The 22nd Asian Workshop on First-Principles Electronic Structure Calculations. 2019
  7. 只野 央将, 末國 晃一郎, 末國 晃一郎. テトラヘドライトにおけるホッピングフォノン伝導の第一原理解析. 日本物理学会 2019年秋季大会. 2019
  8. TADANO, Terumasa. Phonon anharmonicity from first principles. 第35回CMDワークショップ. 2019 招待講演
  9. 河野 翔也, 飯久保 智, 只野 央将. ペロブスカイト化合物CsSnI3の第一原理フォノン計算. 日本金属学会 2019年春期講演大会. 2019
  10. TADANO, Terumasa. First-principles study on phonon anharmonicity and glasslike thermal transport in thermoelectric clathrates. ECMP2019. 2019
  11. 只野 央将. 第一原理計算を用いた非調和フォノン物性の研究. 日本物理学会第74回年次大会. 2019
  12. 只野 央将, 常行 真司, 常行 真司. ALAMODEを使った格子熱伝導・有限温度フォノン計算. 第 5 回 大型実験施設とスーパーコンピュータとの連携利用シンポジウム. 2019
  13. 大西正人, 只野 央将, 常行真司, 塩見 淳一郎. クラスレート化合物の熱伝導特性に及ぼす非調和フォノンの影響. 第66回応用物理学会春季学術講演会. 2019
  14. TADANO, Terumasa, Wissam A. Saidi. First-principles study of structural phase transition and thermal transport in halide perovskite CsPbBr3. APS March Meeting 2019. 2019
  15. 只野 央将. クラスレートのフォノンと熱伝導の第一原理解析. 放射光・中性子線・理論計算によるクラスレート化合物の格子・電子物性の解明. 2019 招待講演
  16. TADANO, Terumasa. Efficient ab initio prediction of thermal properties of solids assisted by machine learning. PRESTO International Symposium on Materials Informatics. 2019 招待講演
  17. TADANO, Terumasa, Wissam A Saidi. Phonons transport and structural phase transition in CsPbBr3 from first-principles. 19th International Workshop on Computational Physics and Material Science: Total Energy and Force Methods. 2019
2017
  1. 浦宏行, 明石遼介, 只野 央将, 大久保 勇男, 常行真司. 第一原理計算による層状窒化物半導体の格子熱伝導率の予測. 日本物理学会 2017年秋季大会. 2017
  2. 只野 央将, 常行 真司. Modeling Phonon Transport in Emergent Thermoelectric Materials with Large Atomic Displacements: A First-Principles Study. IUMRS-ICAM2017. 2017
  3. 只野 央将. 第一原理計算でのフォノンの非調和性の取り扱い. 電子格子相互作用:基礎物理からデバイス応用まで. 2017 招待講演
  4. 只野 央将, 常行 真司. First-principles simulation of phononic thermal transport in strongly anharmonic solids. The 9th US-Japan Joint Seminar on Nanoscale Transport Phenomena. 2017
  5. 只野 央将. Thermal conductivity and lattice anharmonicity from first principles: Theoretical developments and applications. MIMD. 2017 招待講演
  6. 大庭悠輔, 只野 央将, 明石遼介, 常行真司. 非調和性を段階的に考慮した第一原理計算によるScF3の負熱膨張の解析. 日本物理学会第72回年次大会 (2017年). 2017
  7. 只野 央将, 常行 真司. Efficient and accurate first-principles method for modeling phonon anharmonicity and thermal conductivity. MANA International Symposium 2017. 2017
  8. 只野 央将, 常行 真司, 塩見淳一郎, Shenghong Ju , 志賀 拓磨, 合田 義弘, 吉田 亮, 本郷 研太. 非調和フォノン物性の第一原理計算:プログラム開発とマテリアルズインフォマティクスへ向けた取り組み. 第3回材料系ワークショップ〜計算物質科学を拓く第一原理計算とその. 2017 招待講演

その他の文献 TSV

2017
  1. 只野 央将. 第一原理フォノン伝導計算. フォノンエンジニアリング マイクロ・ナノスケールの次世代熱制御技術. (2017) 117-129

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