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Following a line of research that I have developed for several years, I argue that the best strategy for understanding quantum gravity is to build a picture of the physical world where the notion of time plays no role.
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C Rovelli, “Time in quantum gravity: an hypothesis”,
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C Rovelli, “Quantum mechanics without time: a model”,
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C Rovelli, “Statistical mechanics of gravity and thermodynamical origin of time”,
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C Rovelli, “The statistical state of the universe”,
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A Connes, C Rovelli, “Von Neumann algebra automorphisms and time versus thermodynamics relation in general covariant quantum theories”,
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C Rovelli, “Analysis of the different meaning of the concept of time in different physical theories”,
C Rovelli, “Partial observables”,
2002
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C Rovelli, “A note on the foundation of relativistic mechanics. I: Relativistic observables and relativistic states”, to appear in the proceedings of the 15th SIGRAV Conference on General Relativity and Gravitational Physics, Rome, September 2002, gr-qc/0111037
2002
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C Rovelli, “Covariant Hamiltonian Formalism for Field Theory: Symplectic Structure and Hamilton-Jacobi Equation on the Space G”, to appear on the proceedings of the conference DICE 2002, Piombino, September 2002. gr-qc/0207043
2002
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M Reisenberger, C Rovelli, “Spacetime states and covariant quantum theory”,
2002
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P Martinetti, C Rovelli: “Diamonds’s Temperature: Unruh effect for bounded trajectories and thermal time hypothesis”, Classical and Quantum Gravity (2003) 4919-4932
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JC Baez, “Spin foam models,”
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C Rovelli, “A note on the foundation of relativistic mechanics. II: Covariant hamiltonian general relativity”, gr-qc/0202079
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JL Lagrange, “Mémoires de la première classe des sciences mathematiques et physiques” (Paris, Institute de France, 1808)
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L Smolin, “The present moment in quantum cosmology: Challenges to the arguments for the elimination of time,” arXiv:gr-qc/0104097
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