| _version_ | 1866902026259005440 |
|---|---|
| author | Cohen, Yaniv |
| author_facet | Cohen, Yaniv |
| contents | <div> <div>A perfectly ordered periodic `4^3` Genesis lattice with `N=64` and degree `k=6` is immediately unstable under the existing reversible Phase 3 Monte Carlo dynamics. In the current `8`-sweep benchmark the degree-distribution entropy rises from `S=0` to `S_final \approx 1.885` with peak `S_max \approx 2.086`, the non-decreasing entropy-step fraction is `0.625`, and the uniform fixed-edge null baseline suppresses exact spontaneous return to the Genesis state down to `\log_{10} P_{return} \approx -273.831`. The present result supports an emergent macroscopic arrow of time as a statistical-geometric property of the QGEFT vacuum rather than as an inserted asymmetric microscopic law.</div> </div> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_20192929 |
| institution | Zenodo |
| language | eng |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | The Emergence of the Arrow of Time and Macroscopic Irreversibility in Topological Vacua Cohen, Yaniv Quantum Gravity Lattice Field Theory Emergent Spacetime Monte Carlo Simulation High Energy Physics <div> <div>A perfectly ordered periodic `4^3` Genesis lattice with `N=64` and degree `k=6` is immediately unstable under the existing reversible Phase 3 Monte Carlo dynamics. In the current `8`-sweep benchmark the degree-distribution entropy rises from `S=0` to `S_final \approx 1.885` with peak `S_max \approx 2.086`, the non-decreasing entropy-step fraction is `0.625`, and the uniform fixed-edge null baseline suppresses exact spontaneous return to the Genesis state down to `\log_{10} P_{return} \approx -273.831`. The present result supports an emergent macroscopic arrow of time as a statistical-geometric property of the QGEFT vacuum rather than as an inserted asymmetric microscopic law.</div> </div> |
| title | The Emergence of the Arrow of Time and Macroscopic Irreversibility in Topological Vacua |
| topic | Quantum Gravity Lattice Field Theory Emergent Spacetime Monte Carlo Simulation High Energy Physics |
| url | https://doi.org/10.5281/zenodo.20192929 |