Cosmological Elastodynamics, Post-Nozzle Bulk Isolation, Void Interval Dilation (VID), and Observational Signatures in BAO and the CMB Silk Tail (XL v6)
We present the cosmological elastodynamic framework of the FCD-RBv6 model, unifying inter-brane elasticity, cosmic expansion, and primordial acoustic oscillations. Following the cessation of fundamental cosmic string extrusion from the white-hole mother nozzle at base tension and Zitterbewegung frequency , the 5D Anti-de Sitter () resonant cavity undergoes hermetic isolation. Cosmic expansion is reinterpreted not as spatial stretching ex nihilo, but as the holographic deployment of 5D flux tubes (tentacles) adhering to Ryu-Takayanagi entropy bounds (). In cosmic voids lacking rigid Einstein-Rosen (ER) anchors, Void Interval Dilation (VID, ) estirates transverse shear wave packets, yielding a dynamical dark energy equation of state . Furthermore, the elastic scaffold induces parametric resonance that splits the Baryon Acoustic Oscillation (BAO) peak () into asymmetric sidebands at and , generating Alcock-Paczynski spheroid deformation (the “Topological Egg”). Finally, inter-brane transverse shear S-modes produce a stationary harmonic modulation () in the CMB EE polarization spectrum across the Silk tail (). We outline a rigorous data analysis pipeline for ACT DR6 and SPT-3G to test this signature against standard ΛCDM..
Authors
- Ricardo Jose Miralles
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-14
- DOI
- https://doi.org/10.5281/zenodo.22758373
- Primary Topic
- Cosmology and Gravitation Theories
- Type
- preprint