G-Flux Theoretical Physics NotesVol.1 N°1
Editorial Scope of the Series, Honesty about Limits, and Non-Claims Policy G-Flux Theoretical Physics Notes is an electronic, diamond open-access series devoted to theoretical physics and relativity: reduced formalisms, stability analysis, order-of-magnitude estimates, and falsifiable predictions. The first issue publishes the Phase A case base of the TAC-MAG framework (Causal Asymmetry Theory and Gozategui Accretion Metric), already deposited on Zenodo and prepared as a working paper for the gr-qc community. The series is not a vehicle for technological promises. The TAC-MAG case base recognizes a gap of approximately forty-seven orders of magnitude between the kinetic energy density available in zodiacal dust and the density required for a useful metric deformation on a kilometre scale. Accordingly, the formalism is classified strictly as a theoretical hypothesis. No claim is made of propulsion, power extraction, or metric engineering of a habitat from that coupling. In the case base the asymmetry tensor is auxiliary, so the tensor sector remains that of general relativity and the gravitational-wave speed satisfies c_T = c, consistent with multimessenger constraints. The only short-term quantitative prediction retained is a fractional proper-time residual of order 5×10⁻⁸ per year at the reference coupling, to be sought—if at all—after subtraction of the standard relativistic background. Horizon Space Station and any habitat-engineering line remain on a separate track grounded in established physics and engineering, independent of whether TAC-MAG is confirmed or refuted. Conflating the two discourses would weaken both the hypothesis and the engineering work.
Authors
- José Gozategui
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-30
- DOI
- https://doi.org/10.5281/zenodo.23050605
- Primary Topic
- Pulsars and Gravitational Waves Research
- Type
- article
- Field-Weighted Citation Impact
- 0.00