Two-loop prediction for scaling exponents in \((2 +\epsilon)\)-dimensional quantum gravity
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Publication:678279
DOI10.1016/S0550-3213(97)00091-6zbMath0925.81104arXivhep-th/9609077OpenAlexW2083642791MaRDI QIDQ678279
Toshiaki Aida, Yoshihisa Kitazawa
Publication date: 16 April 1997
Published in: Nuclear Physics. B (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/hep-th/9609077
Perturbative methods of renormalization applied to problems in quantum field theory (81T15) Gravitational interaction in quantum theory (81V17) Quantization of the gravitational field (83C45)
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NONLOCAL EFFECTIVE FIELD EQUATIONS FOR QUANTUM COSMOLOGY ⋮ Asymptotic safety and the cosmological constant ⋮ The unitary conformal field theory behind 2D asymptotic safety ⋮ Covariant spin-parity decomposition of the torsion and path integrals ⋮ On induced action for conformal higher spins in curved background ⋮ Fixed points of quantum gravity in extra dimensions ⋮ Constraints on gravitational scaling dimensions from non-local effective field equations ⋮ Cosmological \(\alpha '\)-corrections from the functional renormalization group ⋮ Renormalization group and the Planck scale ⋮ Quantum gravity on the lattice ⋮ Background-metric independent formulation of 4D quantum gravity ⋮ INCONSISTENCIES FROM A RUNNING COSMOLOGICAL CONSTANT
Cites Work
- Scaling exponents in quantum gravity near two dimensions
- General bosonic \(\sigma\) models and string effective actions
- Quantum gravity is renormalizable near two dimensions
- Renormalizability of quantum gravity near two dimensions
- Ultraviolet stable fixed point and scaling relations in \((2+\epsilon)\)-dimensional quantum gravity
- Conformal invariance and renormalization group in quantum gravity near two dimensions.
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