Interstellar Anomalies as Arithmetic Latency Effects: A Deterministic Analysis of 'Oumuamua and 3I/ATLAS within the AToE Framework
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2026
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| author | Krause, Thomas |
| author_facet | Krause, Thomas |
| contents | <div class="Y3BBE">This research provides a deterministic explanation for the anomalous non-gravitational acceleration of interstellar objects (ISOs) like 1I/'Oumuamua and 3I/ATLAS. By applying the <strong class="Yjhzub">Arithmetic Theory of Everything (AToE)</strong>, the study demonstrates that these anomalies are not caused by physical outgassing, but by an "arithmetic latency" within the vacuum's 12-dimensional projection.</div> <div class="Y3BBE">Key highlights include:</div> <ul class="KsbFXc U6u95"> <li class="dF3vjf"><span class="T286Pc">Derivation of the </span> ℎ<span class="T286Pc"> factor (target valu</span><span class="T286Pc">e </span>≈10-5<span class="T286Pc">) as a result of the phase-shift between interstellar and solar prime-fock-clusters.</span></li> <li class="dF3vjf"><span class="T286Pc">Mathematical proof for the observed 120-degree jet symmetry of 3I/ATLAS based on 12-sector spatial quantization.</span></li> <li class="dF3vjf"><span class="T286Pc">Formalization of the "Informational Observer Effect," explaining orbital jitters as a result of increased sampling rates (Nyquist limit) during high-precision measurements.</span></li> </ul> <div class="Y3BBE">This framework offers a unified, parameter-free solution to the most puzzling astrophysical observations of the last decade.</div> <div> </div> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_19627318 |
| institution | Zenodo |
| language | |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Interstellar Anomalies as Arithmetic Latency Effects: A Deterministic Analysis of 'Oumuamua and 3I/ATLAS within the AToE Framework Krause, Thomas Interstellar Objects ISOs Oumuamua 3I/Atlas Riemann Zeta Function Non-gravitational acceleration Quantum Gravity Information Physics Nyquist-Shannon sampling theorem <div class="Y3BBE">This research provides a deterministic explanation for the anomalous non-gravitational acceleration of interstellar objects (ISOs) like 1I/'Oumuamua and 3I/ATLAS. By applying the <strong class="Yjhzub">Arithmetic Theory of Everything (AToE)</strong>, the study demonstrates that these anomalies are not caused by physical outgassing, but by an "arithmetic latency" within the vacuum's 12-dimensional projection.</div> <div class="Y3BBE">Key highlights include:</div> <ul class="KsbFXc U6u95"> <li class="dF3vjf"><span class="T286Pc">Derivation of the </span> ℎ<span class="T286Pc"> factor (target valu</span><span class="T286Pc">e </span>≈10-5<span class="T286Pc">) as a result of the phase-shift between interstellar and solar prime-fock-clusters.</span></li> <li class="dF3vjf"><span class="T286Pc">Mathematical proof for the observed 120-degree jet symmetry of 3I/ATLAS based on 12-sector spatial quantization.</span></li> <li class="dF3vjf"><span class="T286Pc">Formalization of the "Informational Observer Effect," explaining orbital jitters as a result of increased sampling rates (Nyquist limit) during high-precision measurements.</span></li> </ul> <div class="Y3BBE">This framework offers a unified, parameter-free solution to the most puzzling astrophysical observations of the last decade.</div> <div> </div> |
| title | Interstellar Anomalies as Arithmetic Latency Effects: A Deterministic Analysis of 'Oumuamua and 3I/ATLAS within the AToE Framework |
| topic | Interstellar Objects ISOs Oumuamua 3I/Atlas Riemann Zeta Function Non-gravitational acceleration Quantum Gravity Information Physics Nyquist-Shannon sampling theorem |
| url | https://doi.org/10.5281/zenodo.19627318 |