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D-Index
38
Citations
5572
World Ranking
6482
National Ranking
2298

Overview

Natalia Artemieva is a researcher affiliated with the Planetary Science Institute in the United States. Their work primarily spans the fields of Physics and Astronomy as well as Earth and Planetary Sciences. The subfields they contribute to include Astronomy and Astrophysics, Geophysics, Atmospheric Science, Paleontology, and Biomaterials.

Their research covers several main topics, among which are Astro and Planetary Science, Planetary Science and Exploration, Geology and Paleoclimatology Research, Paleontology and Stratigraphy of Fossils, Geological and Geochemical Analysis, earthquake and tectonic studies, and Calcium Carbonate Crystallization and Inhibition.

Recent published papers authored or co-authored by Natalia Artemieva include:

  • A steeply-inclined trajectory for the Chicxulub impact, 2020, Nature Communications
  • Global K-Pg Layer Deposited From a Dust Cloud, 2020, Geophysical Research Letters
  • Origin of a global carbonate layer deposited in the aftermath of the Cretaceous-Paleogene boundary impact, 2020, Earth and Planetary Science Letters
  • A large meteoritic event over Antarctica ca. 430 ka ago inferred from chondritic spherules from the Sør Rondane Mountains, 2021, Science Advances
  • Isotopic evolution of planetary crusts by hypervelocity impacts evidenced by Fe in microtektites, 2021, Nature Communications

Natalia Artemieva collaborates with several frequent co-authors in their research activities. These include S. P. S. Gulick, Philippe Claeys, Matthias Van Ginneken, Steven Goderis, and Joanna Morgan.

Their work has appeared regularly in several publication venues, with repeated contributions found in:

  • Meteoritics and Planetary Science
  • Abstracts with programs - Geological Society of America
  • Nature Communications
  • Earth and Planetary Science Letters
  • Geophysical Research Letters

Best Publications

  • Cratering History and Lunar Chronology

    Dieter Stöffler;Graham Ryder;Boris A. Ivanov;Natalia A. Artemieva

  • The rayed crater Zunil and interpretations of small impact craters on Mars

    Alfred S. McEwen;Brandon S. Preblich;Elizabeth P. Turtle;Natalia A. Artemieva

  • Ejection of Martian meteorites

    Jörg Fritz;Natalia Artemieva;Ansgar Greshake

  • Validation of numerical codes for impact and explosion cratering: Impacts on strengthless and metal targets

    E. Pierazzo;N. Artemieva;N. Artemieva;E. Asphaug;E. C. Baldwin

  • Launch of martian meteorites in oblique impacts

    Natalia Artemieva;Boris Ivanov

  • Microbial Rock Inhabitants Survive Hypervelocity Impacts on Mars-Like Host Planets: First Phase of Lithopanspermia Experimentally Tested

    Gerda Horneck;Dieter Stöffler;Sieglinde Ott;Ulrich Hornemann

  • Ries crater and suevite revisited—Observations and modeling Part I: Observations

    Dieter Stöffler;Dieter Stöffler;Natalia A. Artemieva;Natalia A. Artemieva;Natalia A. Artemieva;Kai Wünnemann;W. Uwe Reimold;W. Uwe Reimold

  • Modeling the Ries-Steinheim Impact Event and the Formation of the Moldavite Strewn Field

    Dieter Stöffler;Natalia A. Artemieva;Elisabetta Pierazzo

  • Antipodal effects of lunar basin-forming impacts: Initial 3D simulations and comparisons with observations

    Lon L. Hood;Natalia A. Artemieva;Natalia A. Artemieva

  • Motion of a fragmented meteoroid through the planetary atmosphere

    N. A. Artemieva;V. V. Shuvalov

  • The First Day of the Cenozoic

    Sean P.S. Gulick;Timothy J. Bralower;Jens Ormö;Brendon Hall

  • Starting conditions for hydrothermal systems underneath Martian craters: Hydrocode modeling

    E. Pierazzo;N.A. Artemieva;B.A. Ivanov

  • Experimental evidence for the potential impact ejection of viable microorganisms from Mars and Mars-like planets

    Dieter Stöffler;Gerda Horneck;Sieglinde Ott;Ulrich Hornemann

  • Numerical modeling of Tunguska-like impacts

    V.V. Shuvalov;N.A. Artemieva

  • Efficient disruption of small asteroids by Earth's atmosphere.

    P. A. Bland;N. A. Artemieva

  • Modeling the formation of the K-Pg boundary layer

    Natalia Artemieva;Joanna Morgan

  • Cratering on Titan: impact melt, ejecta, and the fate of surface organics

    Natalia Artemieva;Jonathan Lunine;Jonathan Lunine

  • Ries crater and suevite revisited—Observations and modeling Part II: Modeling

    N. A. Artemieva;N. A. Artemieva;N. A. Artemieva;K. Wünnemann;F. Krien;W. U. Reimold;W. U. Reimold

  • Quantifying the Release of Climate-Active Gases by Large Meteorite Impacts With a Case Study of Chicxulub

    Natalia Artemieva;Joanna Morgan

  • The evolution of the Onaping Formation at the Sudbury impact structure

    Richard A. F. Grieve;Doreen E. Ames;Joanna V. Morgan;Natalia Artemieva;Natalia Artemieva

  • Numerical modeling of the formation of large impact craters

    Boris A. Ivanov;Natalia A. Artemieva

Frequent Co-Authors

Joanna Morgan
Joanna Morgan Imperial College London
Gareth S. Collins
Gareth S. Collins Imperial College London
Boris A. Ivanov
Boris A. Ivanov Russian Academy of Sciences
Dieter Stöffler
Dieter Stöffler Museum für Naturkunde
Philip A. Bland
Philip A. Bland Curtin University
Jonathan I. Lunine
Jonathan I. Lunine Jet Propulsion Lab
Charles S. Cockell
Charles S. Cockell University of Edinburgh
Christian Koeberl
Christian Koeberl University of Vienna
David Goldstein
David Goldstein University of New South Wales
Kliti Grice
Kliti Grice Curtin University

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