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Running G and \Lambda at low energies from physics at M_X: possible cosmological and astrophysical implications

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arxiv hep-ph/0410095 v3 pith:UDDL2GGQ submitted 2004-10-06 hep-ph astro-phgr-qchep-th

classification hep-phastro-phgr-qchep-th
keywords cosmologicalastrophysicallambdamethodphysicseffectsevolvespossible
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The renormalization group (RG) approach to cosmology is an efficient method to study the possible evolution of the cosmological parameters from the point of view of quantum field theory in curved space-time. In this work we continue our previous investigations of the RG method based on potential low-energy effects induced from physics at very high energy scales M_X near M_P. In the present instance we assume that both the Newton constant, G, and the cosmological term, \Lambda, can be functions of a scale parameter \mu. It turns out that G(\mu) evolves according to a logarithmic law which may lead to asymptotic freedom of gravity, similar to the gauge coupling in QCD. At the same time \Lambda(\mu) evolves quadratically with \mu. We study the consistency and cosmological consequences of these laws when \mu=H. Furthermore, we propose to extend this method to the astrophysical domain after identifying the local RG scale at the galactic level. It turns out that Kepler's third law of celestial mechanics receives quantum corrections that may help to explain the flat rotation curves of the galaxies without introducing the dark matter hypothesis. The origin of these effects (cosmological and astrophysical) could be linked, in our framework, to physics at M_X= 10^{16-17} GeV.

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Cited by 3 Pith papers

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  1. Cosmological framework for renormalization group extended gravity at the action level

    gr-qc 2019-08 conditional novelty 6.0 of 10

    Renormalization group corrections to gravity are applied at the action level to cosmology, yielding a constant gravitational slip and a low-redshift f sigma8 modification that may ease the sigma8 tension.

  2. Do $\Lambda_{CC}$ and $G$ run?

    hep-th 2024-12 conditional novelty 2.0 of 10

    The paper concludes that the cosmological constant and Newton's constant are not running parameters in physical reactions, and that apparent scale dependence in cutoff or dimensional-regularization schemes is not physical.

  3. In the Realm of the Hubble tension $-$ a Review of Solutions

    astro-ph.CO 2021-03 unverdicted novelty 2.0 of 10

    A review summarizing the Hubble constant tension and proposed solutions from new physics that restore agreement between Planck CMB data and local H0 measurements within 1-2 sigma.

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