Non-Equilibrium Green's Function Method for Energy, Momentum, and Angular Momentum Transfer Mediated by Photons

Non-Equilibrium Green's Function Method for Energy, Momentum, and Angular Momentum Transfer Mediated by Photons

Kavli Institute for Theoretical Physics via YouTube Direct link

Intro

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1 of 25

Intro

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Non-Equilibrium Green's Function Method for Energy, Momentum, and Angular Momentum Transfer Mediated by Photons

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  1. 1 Intro
  2. 2 Coulomb problem, Meir- Wingreen formula
  3. 3 Heat transfer between two graphene sheets
  4. 4 Geometry effects
  5. 5 Heat transfer between zigzag nanotubes or triangles
  6. 6 Heat transfer driven by current
  7. 7 System setup
  8. 8 NEGF preliminaries
  9. 9 Fluctuation-dissipation theorem in thermal equilibrium
  10. 10 Dyson equations
  11. 11 Keldysh equation
  12. 12 Q = 0 gauge, fundamental equation for vector potential A
  13. 13 Poynting theorem, steady state average
  14. 14 Momentum and angular momentum conservation
  15. 15 From surface integral to volume integral
  16. 16 Meir-Wingreen formula
  17. 17 Far field approximations
  18. 18 Torque and force on object
  19. 19 resonance effect
  20. 20 Force and torque from the nonequilibrium edge
  21. 21 Emission from graphene edge
  22. 22 NEGF advantage
  23. 23 Acknowledgements
  24. 24 Angular momentum emission
  25. 25 from a benzene molecule

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