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First-Order Quantum Correction in Coherent State Expectation Value of Loop-Quantum-Gravity Hamiltonian: Overview and Results

General Relativity and Quantum Cosmology 2022-05-17 v4 Cosmology and Nongalactic Astrophysics High Energy Physics - Lattice High Energy Physics - Theory

Abstract

Given the Loop-Quantum-Gravity (LQG) non-graph-changing Hamiltonian H[N]^\widehat{H[N]}, the coherent state expectation value H[N]^\langle\widehat{H[N]}\rangle admits an semiclassical expansion in p2\ell^2_{\rm p}. In this paper, we compute explicitly the expansion of H[N]^\langle\widehat{H[N]}\rangle on the cubic graph to the linear order in p2\ell^2_{\rm p}, when the coherent state is peaked at the homogeneous and isotropic data of cosmology. In our computation, a powerful algorithm is developed to overcome the complexity in computing H[N]^\langle \widehat{H[N]} \rangle. In particular, some key innovations in our algorithm substantially reduce the computational complexity in the Lorentzian part of H[N]^\langle\widehat{H[N]}\rangle. Moreover, the algorithm developed in the present work makes it possible to compute the expectation value of arbitrary monomial of holonomies and fluxes on one edge up to arbitrary order of p2\ell_{\rm p}^2.

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Cite

@article{arxiv.2012.14242,
  title  = {First-Order Quantum Correction in Coherent State Expectation Value of Loop-Quantum-Gravity Hamiltonian: Overview and Results},
  author = {Cong Zhang and Shicong Song and Muxin Han},
  journal= {arXiv preprint arXiv:2012.14242},
  year   = {2022}
}

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24 pages