Revision and Multi-Formula Verification of Orbital Dynamic Parameters for Comet 3I/ATLAS Based on New Observation Data (Zenodo Final Version)

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Autore principale: Bian, Zhenfeng
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author Bian, Zhenfeng
author_facet Bian, Zhenfeng
contents <p>This study integrates 4 months of tracking data from the James Webb Space Telescope (JWST) and ESA’s Juice probe (Sep-Oct 2025) to update physical and orbital parameters of comet 3I/ATLAS. By applying a cross-scale formula system (including η-gravity dark matter-free formula), we reveal the dominant source of orbital velocity residuals (0.14±0.03 km/s): over 99% comes from gravitational correction of the Galactic thick disk energy field (0.135±0.02 km/s), while gas outgassing only contributes 1.73×10⁻⁷ km/s (negligible). Reverse verification confirms energy field density (1.82±0.09×10⁻¹⁴ kg/m³) and nucleus mass (31.0±1.5×10⁹ tons) are consistent with observations. This work quantifies the energy field’s dominant role in interstellar comet orbits, establishing a new theoretical framework for November 2025 observations and demonstrating dual "explanatory-predictive" capabilities of the formula system.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17259605
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Revision and Multi-Formula Verification of Orbital Dynamic Parameters for Comet 3I/ATLAS Based on New Observation Data (Zenodo Final Version)
Bian, Zhenfeng
3I/ATLAS, interstellar comet, orbital dynamics, energy field, gravitational correction, η-gravity
<p>This study integrates 4 months of tracking data from the James Webb Space Telescope (JWST) and ESA’s Juice probe (Sep-Oct 2025) to update physical and orbital parameters of comet 3I/ATLAS. By applying a cross-scale formula system (including η-gravity dark matter-free formula), we reveal the dominant source of orbital velocity residuals (0.14±0.03 km/s): over 99% comes from gravitational correction of the Galactic thick disk energy field (0.135±0.02 km/s), while gas outgassing only contributes 1.73×10⁻⁷ km/s (negligible). Reverse verification confirms energy field density (1.82±0.09×10⁻¹⁴ kg/m³) and nucleus mass (31.0±1.5×10⁹ tons) are consistent with observations. This work quantifies the energy field’s dominant role in interstellar comet orbits, establishing a new theoretical framework for November 2025 observations and demonstrating dual "explanatory-predictive" capabilities of the formula system.</p>
title Revision and Multi-Formula Verification of Orbital Dynamic Parameters for Comet 3I/ATLAS Based on New Observation Data (Zenodo Final Version)
topic 3I/ATLAS, interstellar comet, orbital dynamics, energy field, gravitational correction, η-gravity
url https://doi.org/10.5281/zenodo.17259605