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John R. Klauder University of Florida

---- Functional Integrals in ---- ---- Affine Quantum Gravity ----. John R. Klauder University of Florida Dresden, September, 2007. Affine Quantum Gravity. Kinematical variables

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John R. Klauder University of Florida

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  1. ---- Functional Integrals in ---- ---- Affine Quantum Gravity ---- John R. Klauder University of Florida Dresden, September, 2007

  2. Affine Quantum Gravity • Kinematical variables • Metric positivity • Initial representation • Without constraints • Quantum constraints • Projection operator method • Imposition of constraints • Functional integral representation

  3. Kinematical variables • Affine commutation relations

  4. Initial representation • Affine coherent states

  5. Quantum constraints • Enforcing the constraints

  6. Quantum constraints (2) • Non-standard constraints

  7. Quantum constraints (3) • Observables

  8. Imposition of Constraints • Path integral

  9. Initial representation • Affine coherent states

  10. Imposition of Constraints (2) • Functional integral The Heart of the Matter

  11. Further Issues • Nonrenormalizability? • Hard-core interpretation • Appearance of Time? • Soluble examples • Removal of Cutoffs? • Choose proper representation • Reduce as necessary

  12. Hard-core interaction • Free and pseudo-free theories Theory DISCONTINUOUS PF F CONTINUOUS Coupling constant

  13. Hard-core interaction (2) • Idealized functional integral

  14. Hard-core interaction (3) • Unconventional model analysis

  15. Summary: AQG • Preserve metric positivity Affine kinematical variables • Gravitational anomaly Projection operator method • Functional integral formalism Continuous-time regularization • Nonrenormalizable theory Hard-core interaction

  16. Thank you !

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