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2020”N3ŒŽ
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  •  S. Koyanagi and Y.  Tanimura, The laws of thermodynamics for quantum dissipative systems: A quasi-equilibrium Helmholtz energy approach, J. Chem. Phys. 157, 157, 014104 (2022).(PDF)
  •  S. Koyanagi and Y.  Tanimura, Numerically "exact" simulations of a quantum Carnot cycle: Analysis using thermodynamics work diagrams, J. Chem. Phys. 157, 084110 (2022). (PDF)
  •  S. Koyanagi and Y.  Tanimura, Classical and quantum thermodynamics described as a system–bath model: The dimensionless minimum work principle, J. Chem. Phys. 160, 234112 (2024).(PDF)
  •  S. Koyanagi and Y.  Tanimura, Classical and quantum thermodynamics in a non-equilibrium regime: Application to thermostatic Stirling engine, J. Chem. Phys. 161, 114113 (2024).(PDF)
  •  S. Koyanagi and Y.  Tanimura, Thermodynamic quantum Fokker–Planck equations and their application to thermostatic Stirling engine, J. Chem. Phys. 161, 112501 (2024).(PDF)
  •   S. Koyanagi and Y.  Tanimura, Hierarchical equations of motion for multiple baths (HEOM-MB) and their application to Carnot R,cycle, J. Chem. Phys. 161, xxxxxx (2024).(PDF)
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    Room;—Šw•”6†ŠÙ 254
    Tel; 075-753-4022
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    E-mail;   (koyas_at_qchem.kuchem.kyoto-u.ac.jp)

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