Onodera Yositaka | Department Of Applied Physics University Of Tokyo
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概要
関連著者
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Onodera Yositaka
Department Of Applied Physics University Of Tokyo
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ONODERA Yositaka
Department of Physics,Tokyo Metropolitan University
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ONODERA Yoshitaka
Department of Physics, Tokyo Metropolitan University
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Onodera Yositaka
Department of Physics, Meiji University
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Okazaki Makoto
Department Of Applied Physics Department Of Physics University Of Tokyo
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Onodera Yositaka
Department Of Physics Meiji University
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Okazaki Makoto
Department Of Applied Physics University Of Tokyo
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Onodera Yoshitaka
Department Of Physics Meiji University
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Kojyo Norimichi
Department Of Physics Tokyo Metropolitan University
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Okuno Shigeru
Department Of Physics Tokyo Metropolitan University
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Onodera Yoshitaka
Department of Physics, Meiji University
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INUI Teturo
Department of Applied Physics, University of Tokyo
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Inui Teturo
Department Of Applied Physics University Of Tokyo
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Inui Teturo
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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Onodera Yositaka
Department Of Physics Tokyo Metropolitan University
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Onodera Yositaka
Department Of Physics School Of Science And Technology Meiji University
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Tanabe Yukito
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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KOJYO Norimichi
Department of Physics,Tokyo Metropolitan University
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OSHIKIRI Toshihiro
Department of Physics,Tokyo Metropolitan University
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Iwamatsu Masao
Department Of Computer Engineering Faculty Of Information Sciences Hiroshima City University
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Iwamatsu Masao
Department Of Physics Tokyo Metropolitan University
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Oshikiri Toshihiro
Department Of Physics Tokyo Metropolitan University
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Seimiya Masato
Department of Physics,Tokyo Metropolitan University
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SAWASHIMA Nobuyuki
Department of Physics,Tokyo Metropolitan University
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Wada Sumiaki
Department of Physics, School of Science and Technology, Meiji University
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Onodera Yositaka
Department Of Physics Kyoto University
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Wada Sumiaki
Department Of Physics School Of Science And Technology Meiji University
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Seimiya Masato
Department Of Physics Tokyo Metropolitan University
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Onodera Y.
Department Of Obstetrics And Gynecology Hokkaido University School Of Medicine
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IWAMATSU Masao
Department of Physics, Tokyo Metropolitan University
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TANABE Yukito
Department of Applied Physics,University of Tokyo
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Onodera Y.
Department of Applied Physics, University of Tokyo
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ONODERA Yositaka
Department of Physics, Kyoto University
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Onodera Yositaka
Department of Physics,School of Science and Technology,Meiji University
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Onodera Yoshitaka
Department of Physics,Tokyo Metropolitan University
著作論文
- Two-Polaron Solution and Its Stability in the Continuum Model of Polyacetylene
- Coexistence of a Soliton and a Polaron in Trans-Polyacetylene
- Two Kinds of Dipole Moments in Ferroelectric Phase Transitions in Terms of a Coupled Anharmonic-Oscillator Model
- Wave-Number Dependent Oscillator Strength and Longitudinal-Transverse Splitting of Exciton in CuCl
- Dynamical Response of Ferroelectrics in Terms of a Classical Anharmonic-Oscillator Model (Condensed Matter : Structure, Mechanical and Thermal Properties)
- Tables of Basis Functions for Double Point Groups
- Breakdown of Debye's Model for Dielectric Relaxation in High Frequencies
- Soliton Model for Halogen-Bridged Mixed-Valence Platinum Complexes
- Relativistic Electronic Structure of KI Crystal
- Relativistic Energy Bands of Kl
- Dynamical Structure Factor of a Classical Anharmonic Oscillator
- Proton Tunneling Model for the Ferroelectric Phase Transition in CsH_2OPO_4
- Theory of the Ferroelectric Phase Transition in Cs (H_D_x)_2PO_4
- Relativistic Theory for Energy-Band Calculation
- Effects of Impurity-Induced Interchain Coupling on Polarons in Quasi-One-Dimensional Solids
- Correlation between Transition Entropy and the Rhodes-Wohlfarth Ratio in Ferroelectric Materials
- Landau Free Energy in the Mean-Field Approximation for Coupled Classical Anharmonic Oscillators
- k-Dependence of Exciton Longitudinal-Transverse Splitting
- Lifshitz's Criterion for Symmetry Changes in Second-Order Phase Transitions
- Doublet Structure of the L_ Absorption Edge Singularity of Na Metal
- Free Energy and Specific Heat in Ferroelectric Phase Transition in Terms of a Single-Mode Anharmonic Oscillator Model
- Dynamic Susceptibility of Classical Anharmonic Oscillator : A Unified Oscillator Model for Order-Disorder and Displacive Ferroelectrics