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«Ex astris - scientia»
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«Ex astris - scientia»
The project offers a new hypothesis about the nature of dark matter. Instead of hypothetical particles (WIMPS, axions, and sterile neutrinos), it is proposed that dark matter is stable residual gravitational fields ("scars" of space—time) left after the complete evaporation of primordial black holes with a mass of ~1011 kg. The hypothesis is based on three established facts: Hawking evaporation, gravitational waves without a source (LIGO, 2015) and the effect of gravitational memory. The key assumption is to scale the relaxation time of the field as τ ∝ 1/M. Calculations show that the total field of accumulated "scars" in the Milky Way gives an acceleration of g ≈ 1.6×10-1⁰ m/s2, which coincides with the observed acceleration from dark matter. The hypothesis connects the anomalies of the cosmic microwave background (the "axis of evil") and the Great Attractor.
To develop a verifiable model that can be confirmed or refuted by observational data (Euclid, James Webb, Einstein Telescope). Prepare an article for publication in a peer-reviewed journal and present the hypothesis at international conferences (STC-2026, ISGCA).
The project is at the stage of a formulated hypothesis with primary international validation. Analytical calculations have been performed, the formula for the relaxation time of the residual fields has been derived, and the coincidence with the observed data has been shown. The work was presented to scientists at NASA Goddard Space Flight Center (A. Kashlinsky, A. Kutyurev) and received their comments. Moscow State University Professor V.M. Lipunov (traffic police, MASTER telescope network) got acquainted with the work and promised to assign a talented student for joint development. At the same time, I am undergoing practical training on the RT-22 radio telescope at the Pushchino Observatory. I am looking for support to correct inaccuracies and publish in a peer-reviewed journal.
To be announced
The project offers a new hypothesis about the nature of dark matter. Instead of hypothetical particles (WIMPS, axions, and sterile neutrinos), it is proposed that dark matter is stable residual gravitational fields ("scars" of space—time) left after the complete evaporation of primordial black holes with a mass of ~1011 kg. The hypothesis is based on three established facts: Hawking evaporation, gravitational waves without a source (LIGO, 2015) and the effect of gravitational memory. The key assumption is to scale the relaxation time of the field as τ ∝ 1/M. Calculations show that the total field of accumulated "scars" in the Milky Way gives an acceleration of g ≈ 1.6×10-1⁰ m/s2, which coincides with the observed acceleration from dark matter. The hypothesis connects the anomalies of the cosmic microwave background (the "axis of evil") and the Great Attractor.
To develop a verifiable model that can be confirmed or refuted by observational data (Euclid, James Webb, Einstein Telescope). Prepare an article for publication in a peer-reviewed journal and present the hypothesis at international conferences (STC-2026, ISGCA).
The project is at the stage of a formulated hypothesis with primary international validation. Analytical calculations have been performed, the formula for the relaxation time of the residual fields has been derived, and the coincidence with the observed data has been shown. The work was presented to scientists at NASA Goddard Space Flight Center (A. Kashlinsky, A. Kutyurev) and received their comments. Moscow State University Professor V.M. Lipunov (traffic police, MASTER telescope network) got acquainted with the work and promised to assign a talented student for joint development. At the same time, I am undergoing practical training on the RT-22 radio telescope at the Pushchino Observatory. I am looking for support to correct inaccuracies and publish in a peer-reviewed journal.
To be announced