The Zhamanshin Impact Event: Potential Implications for Environmental Responses and Biological Linkages on Earth and Beyond

Fuente: arXiv
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Auteurs principaux: Garvin, James B., Anderson, Connor J., Melocik, Katherine A., McClain, Devin R., Sinno, Scott S., Noh, Myoung-Jong, Tucker, Compton J.
Format: Preprint
Publié: 2026
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author Garvin, James B.
Anderson, Connor J.
Melocik, Katherine A.
McClain, Devin R.
Sinno, Scott S.
Noh, Myoung-Jong
Tucker, Compton J.
author_facet Garvin, James B.
Anderson, Connor J.
Melocik, Katherine A.
McClain, Devin R.
Sinno, Scott S.
Noh, Myoung-Jong
Tucker, Compton J.
contents At least one large-body (diameter > 1.1 km) hypervelocity cratering event occurred during ~ 0.8-0.90 Ma (Zhamanshin, Kazakhstan) in the Middle Pleistocene Transition period. Analysis designed to reduce uncertainty in the dimensions of the Zhamanshin structure employing high resolution topography demonstrated that it likely generated a ~ 26.5 km diameter multi-ring crater. This is at least two times larger than the current best estimates. Using a range of accepted impactor sizes, velocities, compositions, and angles of impact, such impacts typically yield kinetic energies of impact over 240,000 Megatons (TNT). Explosive energetic events of this magnitude (e.g., Yellowstone Caldera) at other times (K-Pg) have created global environmental effects. The factor of two discrepancy in the dimensions of Zhamanshin increases the kinetic energy yield by factors of 7-10, with significantly larger environmental consequences. This justifies examination of rapid climate transitions linked to biological consequences, including those related to environmental perturbations, at ~0.9 Ma.
format Preprint
id arxiv_https___arxiv_org_abs_2604_04884
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle The Zhamanshin Impact Event: Potential Implications for Environmental Responses and Biological Linkages on Earth and Beyond
Garvin, James B.
Anderson, Connor J.
Melocik, Katherine A.
McClain, Devin R.
Sinno, Scott S.
Noh, Myoung-Jong
Tucker, Compton J.
Earth and Planetary Astrophysics
At least one large-body (diameter > 1.1 km) hypervelocity cratering event occurred during ~ 0.8-0.90 Ma (Zhamanshin, Kazakhstan) in the Middle Pleistocene Transition period. Analysis designed to reduce uncertainty in the dimensions of the Zhamanshin structure employing high resolution topography demonstrated that it likely generated a ~ 26.5 km diameter multi-ring crater. This is at least two times larger than the current best estimates. Using a range of accepted impactor sizes, velocities, compositions, and angles of impact, such impacts typically yield kinetic energies of impact over 240,000 Megatons (TNT). Explosive energetic events of this magnitude (e.g., Yellowstone Caldera) at other times (K-Pg) have created global environmental effects. The factor of two discrepancy in the dimensions of Zhamanshin increases the kinetic energy yield by factors of 7-10, with significantly larger environmental consequences. This justifies examination of rapid climate transitions linked to biological consequences, including those related to environmental perturbations, at ~0.9 Ma.
title The Zhamanshin Impact Event: Potential Implications for Environmental Responses and Biological Linkages on Earth and Beyond
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2604.04884