Multiscale Approaches to Quantum Mechanics - Vacuum, Atoms, Engineering-Scale

Multiscale Approaches to Quantum Mechanics - Vacuum, Atoms, Engineering-Scale

Institute for Pure & Applied Mathematics (IPAM) via YouTube Direct link

Quantum oscillator model

19 of 23

19 of 23

Quantum oscillator model

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Multiscale Approaches to Quantum Mechanics - Vacuum, Atoms, Engineering-Scale

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  1. 1 Intro
  2. 2 Experimental Evidence
  3. 3 Experimental Results
  4. 4 Hessian Matrix
  5. 5 Faraday Cage Effect
  6. 6 Macroscale cantilever
  7. 7 Model interpretation
  8. 8 Charge transfer
  9. 9 Phonons
  10. 10 Error bars
  11. 11 Measurement error
  12. 12 Binding energies
  13. 13 Quantum field
  14. 14 Quantum vacuum
  15. 15 Heron of bomb effect
  16. 16 Thunderweight interactions
  17. 17 Intermolecular interactions
  18. 18 Quantum vacuum field
  19. 19 Quantum oscillator model
  20. 20 Quantum picture vs classical picture
  21. 21 Classical scaling law
  22. 22 Beyond perturbation theory
  23. 23 Future work

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