First-Order Quantum Correction in Coherent State Expectation Value of Loop-Quantum-Gravity Hamiltonian
arXiv:2102.03591 · doi:10.1103/PhysRevD.105.064008
Abstract
Given the non-graph-changing Hamiltonian in Loop Quantum Gravity (LQG), , the coherent state expectation value of , admits an semiclassical expansion in . In this paper, as presenting the detailed derivations of our previous work arXiv:2012.14242, we explicitly compute the expansion of to the linear order in on the cubic graph with respect to the coherent state peaked at the homogeneous and isotropic data of cosmology. In our computation, a powerful algorithm is developed, supported by rigorous proofs and several theorems, to overcome the complexity in the computation of . Particularly, some key innovations in our algorithm substantially reduce the complexity in computing the Lorentzian part of . Additionally, some quantum correction effects resulting from in cosmology are discussed at the end of this paper.
29+25 pages, 2 figures, presenting the detailed derivations of our previous work arXiv:2012.14242, adapted to the published version
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