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Titlebook: Asymptotically Safe Gravity; From Spacetime Folia Alessia Benedetta Platania Book 2018 Springer Nature Switzerland AG 2018 Asymptotic Safet

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https://doi.org/10.1007/978-1-4302-0327-8 require the introduction of new physics. An exception is the Asymptotic Safety scenario for Quantum Gravity, which is based on pure Quantum Field Theory. It builds on the generalized notion of renormalizability naturally arising from the Wilsonian Renormalization Group.
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Quantum Gravity on Foliated Spacetimesy requires the spacetime to be Lorentzian, the EAA is defined by means of a Euclidean path integral. In the context of Quantum Field Theory, the Lorentzian signature can be recovered by Wick-rotating all time-like quantities.
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Conclusionsxed points of the renormalization group flow. On this basis, gravity may result in a finite and predictive quantum theory if its flow converges to a Non-Gaussian Fixed Point (NGFP) in the ultraviolet limit.
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https://doi.org/10.1007/978-1-4302-0327-8ell tested theory known as Standard Model (SM) of particle physics. Similarly, General Relativity provides a successful description of the gravitational interaction and most of its predictions have been confirmed by observations. Although Standard Model and General Relativity show a very good agreem
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https://doi.org/10.1007/978-1-4302-0327-8fected by unphysical ultraviolet divergences. For instance, a systematic study of scattering amplitudes in Quantum Electrodynamics show that, due to the singular high-energy behavior of the theory, Feynman diagrams containing loops result in an infinite contribution to the transition amplitude.
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