THERMODYNAMIC QUANTUM BREATHING (TQB) MODEL and APPLICA TION TO THE PHYSICS OF INTERSTELLAR PROPULSION
TQB model (after resolving Paradoxes in fundamental Physics, Gravitation and majorproblems in Astrophysics and Cosmology– see reading note) deals also with Space-Like Trajectories.Building upon the BPP initiatives (STAIF 1999/2002), this paper advances metric engineering bycontrolling the three internal times (τ1,τ2,τ3) of space-like domains to yield rapid spatial translation,with the objective time interval approaching zero (∆Tobjective → 0). This work outlines the engineering principles and structural design for breakthrough field propulsion and superluminal navigationbased on the manipulation of space-like quantum events. By injecting coherent laser energy withinnegative absolute temperature regimes (T < 0 K) exceeding the vehicle's relativistic mass threshold (Elaser > mrelc2), we induce a prolonged ”Click Out” state that uncouples the vessel from themacroscopic time-like light cone. Navigation across interstellar coordinates is achieved by operatingwithin the three internal temporal dimensions of the space-like domain (Tpast, Tsubjective, Tfuture).Applying the consequences of the postulates of Thermodynamic Quantum Model and the algebraiccancellation of the past and future micro-temporal vectors a massive spatial displacement can beprojected, over a near-zero objective time, to reach any target star-system. To achieve propulsiveforce, TQB’s model details the geometry of an asymmetric scalable conical solenoid generating a linear field gradient (dB/dz). Powered by a pulsed radiofrequency source, this geometry induces localhyperpolarization (> 60% ON∗ phase), disrupting the universal 20c graviton background to createan active directional collisional shadow pressure field (gravity-gradient drive). The introduction ofa ”Quantum Gear Shift” protocol, allows the vessel to transcend the 20c gravitational backgroundand transition toward higher-order tachyon vectors up to 1011c. Finally, technical specificationsfor the Zeeman Phase Decoupling (ZPD) shield, operating at a continuous 8.5--9.1 Tesla, are provided, which suppresses the biological resonance cross-section (σR → 0) of crew tissues against theradiative Tpast vector, preventing internal radioactive dissolution.
Authors
- Luca Pinter
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-10-05
- DOI
- https://doi.org/10.5281/zenodo.23150313
- Primary Topic
- Relativity and Gravitational Theory
- Type
- preprint