Dark matter: a novel composition model explaining astrophysical phenomena and galactic distribution
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2026
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| _version_ | 1866901600477380608 |
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| author | Luo, Xincai |
| author_facet | Luo, Xincai |
| contents | <p>We present a novel dark matter model that provides a comprehensive explanation for a broad range of astrophysical phenomena. The mass of dark matter associated with a solar-like star is several orders of magnitude less than the star's mass. Conversely, the mass of dark matter associated with a supermassive black hole is several orders of magnitude greater than the black hole's mass. Our theory predicts a dark matter density near the Sun that aligns with values derived from galactic rotation curves. This dark matter model is grounded in our particle theory, which derives fundamental particle masses, electromagnetic, weak, and strong coupling constants from first principles, thereby enhancing the Standard Model of particle physics. </p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_20143126 |
| institution | Zenodo |
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| publishDate | 2026 |
| publisher | Zenodo |
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| spellingShingle | Dark matter: a novel composition model explaining astrophysical phenomena and galactic distribution Luo, Xincai Dark matter Standard model of particle physics Galactic rotation curve Solar-like stars Galaxies The Sun Magnetic fields Solar activity Solar Wind CMEs Solar flares SEPs Cosmic rays Coronal heating Sunspot <p>We present a novel dark matter model that provides a comprehensive explanation for a broad range of astrophysical phenomena. The mass of dark matter associated with a solar-like star is several orders of magnitude less than the star's mass. Conversely, the mass of dark matter associated with a supermassive black hole is several orders of magnitude greater than the black hole's mass. Our theory predicts a dark matter density near the Sun that aligns with values derived from galactic rotation curves. This dark matter model is grounded in our particle theory, which derives fundamental particle masses, electromagnetic, weak, and strong coupling constants from first principles, thereby enhancing the Standard Model of particle physics. </p> |
| title | Dark matter: a novel composition model explaining astrophysical phenomena and galactic distribution |
| topic | Dark matter Standard model of particle physics Galactic rotation curve Solar-like stars Galaxies The Sun Magnetic fields Solar activity Solar Wind CMEs Solar flares SEPs Cosmic rays Coronal heating Sunspot |
| url | https://doi.org/10.5281/zenodo.20143126 |