Scaling Solutions of Matter Form Factors in Asymptotically Safe Quantum Gravity

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Main Authors: Bonanno, Alfio M., Buccio, Diego, Glaviano, Emiliano M., Saueressig, Frank
Format: Preprint
Published: 2026
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author Bonanno, Alfio M.
Buccio, Diego
Glaviano, Emiliano M.
Saueressig, Frank
author_facet Bonanno, Alfio M.
Buccio, Diego
Glaviano, Emiliano M.
Saueressig, Frank
contents We investigate the renormalization group flow of a gravity--matter system in which a scalar field is minimally coupled to Einstein gravity and its kinetic term is given by a scale-dependent form factor $f_Λ(-\Box)$. Employing the Wilsonian proper-time flow equation, we derive a closed integro-differential equation that encodes the dependence of the form factor on the UV cutoff $Λ$. We solve the resulting fixed-point problem with a pseudospectral discretization and find a non-trivial fixed point for which $f_\ast(-\Box)$ departs from the canonical $-\Box$ behavior. Linearizing the flow about this solution yields a discrete spectrum of perturbations and a corresponding set of critical exponents, indicating a non-trivial scaling structure in this non-local sector compatible with asymptotic safety. We also observe that the form factor becomes local once the UV cutoff is removed, suggesting that the bare action associated with this fixed point is local in the scalar two-point sector.
format Preprint
id arxiv_https___arxiv_org_abs_2605_11805
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Scaling Solutions of Matter Form Factors in Asymptotically Safe Quantum Gravity
Bonanno, Alfio M.
Buccio, Diego
Glaviano, Emiliano M.
Saueressig, Frank
High Energy Physics - Theory
General Relativity and Quantum Cosmology
We investigate the renormalization group flow of a gravity--matter system in which a scalar field is minimally coupled to Einstein gravity and its kinetic term is given by a scale-dependent form factor $f_Λ(-\Box)$. Employing the Wilsonian proper-time flow equation, we derive a closed integro-differential equation that encodes the dependence of the form factor on the UV cutoff $Λ$. We solve the resulting fixed-point problem with a pseudospectral discretization and find a non-trivial fixed point for which $f_\ast(-\Box)$ departs from the canonical $-\Box$ behavior. Linearizing the flow about this solution yields a discrete spectrum of perturbations and a corresponding set of critical exponents, indicating a non-trivial scaling structure in this non-local sector compatible with asymptotic safety. We also observe that the form factor becomes local once the UV cutoff is removed, suggesting that the bare action associated with this fixed point is local in the scalar two-point sector.
title Scaling Solutions of Matter Form Factors in Asymptotically Safe Quantum Gravity
topic High Energy Physics - Theory
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2605.11805