4.7 Article

Nonperturbative quantum de Sitter universe

期刊

PHYSICAL REVIEW D
卷 78, 期 6, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.78.063544

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资金

  1. ENRAGE (European Network on Random Geometry)
  2. Marie Curie Research Training Network [MRTN-CT2004-005616]
  3. COCOS (Correlations in Complex Systems)
  4. Marie Curie Transfer of Knowledge Project [MTKD-CT2004-517186]
  5. Netherlands Organisation for Scientific Research (NWO)

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The dynamical generation of a four-dimensional classical universe from nothing but fundamental quantum excitations at the Planck scale is a long-standing challenge to theoretical physicists. A candidate theory of quantum gravity which achieves this goal without invoking exotic ingredients or excessive fine-tuning is based on the nonperturbative and background-independent technique of causal dynamical triangulations. We demonstrate in detail how in this approach a macroscopic de Sitter universe, accompanied by small quantum fluctuations, emerges from the full gravitational path integral, and how the effective action determining its dynamics can be reconstructed uniquely from Monte Carlo data. We also provide evidence that it may be possible to penetrate to the sub-Planckian regime, where the Planck length is large compared to the lattice spacing of the underlying regularization of geometry.

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