Topologically Stabilized Torsion in Weak-Field Gravity: A Ricci-Flow Framework

Fuente: arXiv
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Main Author: Varani, Elisa
Format: Preprint
Published: 2025
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author Varani, Elisa
author_facet Varani, Elisa
contents We investigate stationary torsional configurations supported by chiral Majorana neutrino currents in linearized gravity. A Ricci-flow-inspired geometric relaxation (with no physical time interpretation) is introduced to drive the metric perturbation toward fixed points sustained by chiral sources while keeping curvature invariants negligible. We show that divergence-free chiral currents can support globally non-trivial torsional holonomy stabilized by topological invariants associated with the fundamental groups pi1(S1) and pi3(S3). Toroidal skyrmionic domains emerge when one chirality dominates, whereas a chiral-flip interference sector enables Moebius-type non-orientable bridges between opposite-chirality regions. In the static limit, a Green-function formulation provides a finite-range Yukawa-type response governed by the neutrino coherence length. These results identify a purely torsional mechanism, independent of local curvature, through which coherent chiral currents may influence effective gravitational behavior in neutrino-rich environments.
format Preprint
id arxiv_https___arxiv_org_abs_2511_05635
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Topologically Stabilized Torsion in Weak-Field Gravity: A Ricci-Flow Framework
Varani, Elisa
General Relativity and Quantum Cosmology
We investigate stationary torsional configurations supported by chiral Majorana neutrino currents in linearized gravity. A Ricci-flow-inspired geometric relaxation (with no physical time interpretation) is introduced to drive the metric perturbation toward fixed points sustained by chiral sources while keeping curvature invariants negligible. We show that divergence-free chiral currents can support globally non-trivial torsional holonomy stabilized by topological invariants associated with the fundamental groups pi1(S1) and pi3(S3). Toroidal skyrmionic domains emerge when one chirality dominates, whereas a chiral-flip interference sector enables Moebius-type non-orientable bridges between opposite-chirality regions. In the static limit, a Green-function formulation provides a finite-range Yukawa-type response governed by the neutrino coherence length. These results identify a purely torsional mechanism, independent of local curvature, through which coherent chiral currents may influence effective gravitational behavior in neutrino-rich environments.
title Topologically Stabilized Torsion in Weak-Field Gravity: A Ricci-Flow Framework
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2511.05635