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Earth Science

D-Index
31
Citations
6439
World Ranking
8832
National Ranking
2861

Overview

Donna K. Blackman is affiliated with the University of California, San Diego in the United States. Their research primarily spans Earth and Planetary Sciences and Environmental Science, with a significant focus on several specialized subfields. These include Environmental Chemistry, Geophysics, Ocean Engineering, Geology, and Oceanography.

The scientist's work addresses a range of topics, notably:

  • Methane Hydrates and Related Phenomena
  • Seismic Imaging and Inversion Techniques
  • Reservoir Engineering and Simulation Methods
  • Geological and Geophysical Studies
  • Geology and Paleoclimatology Research
  • Marine and Coastal Ecosystems
  • Microbial Community Ecology and Physiology

Donna K. Blackman has contributed to several publication venues throughout their career. Frequent venues include:

  • Zenodo (CERN European Organization for Nuclear Research)
  • Nature
  • Oceanography
  • Geochemistry Geophysics Geosystems
  • Journal of Geophysical Research Planets

Recent papers authored or co-authored by Donna K. Blackman illustrate the scope of their research interests, such as:

  • "Recycling and metabolic flexibility dictate life in the lower oceanic crust," 2020, Nature
  • "Ocean System Science to Inform the Exploration of Ocean Worlds," 2022, Oceanography
  • "Hydrothermal Exploration of the Southern Chile Rise: Sediment-Hosted Venting at the Chile Triple Junction," 2022, Geochemistry Geophysics Geosystems
  • "Sustaining Hydrothermal Circulation With Gravity Relevant to Ocean Worlds," 2024, Journal of Geophysical Research Planets
  • "Author Correction: Recycling and metabolic flexibility dictate life in the lower oceanic crust," 2022, Nature

The scientist has frequently collaborated with other researchers, notably:

  • Antony Morris
  • Jason B. Sylvan
  • H. J. Dick
  • Virginia P. Edgcomb
  • Barbara E. John

Best Publications

  • An off-axis hydrothermal vent field near the Mid-Atlantic Ridge at 30° N

    Deborah S. Kelley;Jeffrey A. Karson;Donna K. Blackman;Gretchen L. Früh-Green

  • Mantle Flow and Melt Generation at Mid-Ocean Ridges

    Jason Phipps Morgan;Donna K. Blackman;John M. Sinton

  • Corrugated slip surfaces formed at ridge–transform intersections on the Mid-Atlantic Ridge

    J. R. Cann;D. K. Blackman;D. K. Smith;E. McAllister

  • Oceanic core complexes and crustal accretion at slow-spreading ridges

    B. Ildefonse;D.K. Blackman;B.E. John;Y. Ohara

  • Origin of extensional core complexes: Evidence from the Mid‐Atlantic Ridge at Atlantis Fracture Zone

    Donna K. Blackman;Johnson R. Cann;Bob Janssen;Deborah K. Smith

  • Imaging the deep seismic structure beneath a mid-ocean ridge : The MELT experiment

    Forsyth Dw;Scheirer Ds;Webb Sc;Dorman Lm

  • Geology of the Atlantis Massif (Mid-Atlantic Ridge, 30° N): Implications for the evolution of an ultramafic oceanic core complex

    Donna K. Blackman;Jeffrey A. Karson;Deborah S. Kelley;Johnson R. Cann

  • Isostatic compensation of tectonic features of the Mid-Atlantic Ridge: 25–27°30′S

    Donna K. Blackman;Donald W. Forsyth

  • Statistical properties of seismic anisotropy predicted by upper mantle geodynamic models

    Thorsten W. Becker;Sebastien Chevrot;Vera Schulte-Pelkum;Donna K. Blackman

  • The influence of plate motions on three-dimensional back arc mantle flow and shear wave splitting

    Chad E. Hall;Karen M. Fischer;E. M. Parmentier;Donna K. Blackman

  • Sensitivity of teleseismic body waves to mineral texture and melt in the mantle beneath a mid–ocean ridge

    Donna K. Blackman;J.-Michael Kendall

  • Teleseismic imaging of subaxial flow at mid-ocean ridges: traveltime effects of anisotropic mineral texture in the mantle

    Donna K. Blackman;J.-Michael Kendall;Paul R. Dawson;H.-Rudolgh Wenk

  • Seismic anisotropy in the upper mantle 2. Predictions for current plate boundary flow models

    Donna K. Blackman;Donna K. Blackman;J.-Michael Kendall;J.-Michael Kendall

  • Dynamics of continental rift propagation: the end-member modes

    J.W. Van Wijk;D.K. Blackman

  • Seismic anisotropy of the upper mantle 1. Factors that affect mineral texture and effective elastic properties

    Donna K. Blackman;H.-Rudolf Wenk;J. Michael Kendall

  • Drilling constraints on lithospheric accretion and evolution at Atlantis Massif, Mid‐Atlantic Ridge 30°N

    D. K. Blackman;B. Ildefonse;B. E. John;Y. Ohara

  • Mantle flow under the western United States from shear wave splitting

    Thorsten W. Becker;Vera Schulte-Pelkum;Donna K. Blackman;James B. Kellogg

  • Geophysical signatures of oceanic core complexes

    Donna K. Blackman;J. Pablo Canales;Alistair J. Harding

  • Mantle control of a dynamically evolving spreading center: Mid-Atlantic Ridge 31–34°S

    Peter J. Michael;Donald W. Forsyth;Donna K. Blackman;Paul J. Fox

  • Micromechanical modeling of the viscoplastic behavior of olivine

    O. Castelnau;O. Castelnau;D. K. Blackman;R. A. Lebensohn;P. Ponte Castañeda

  • Recycling and metabolic flexibility dictate life in the lower oceanic crust

    Jiangtao Li;Jiangtao Li;Paraskevi Mara;Florence Schubotz;Jason B. Sylvan

Frequent Co-Authors

Benoit Ildefonse
Benoit Ildefonse University of Montpellier
Christopher J. MacLeod
Christopher J. MacLeod Cardiff University
John A. Orcutt
John A. Orcutt University of California, San Diego
Alistair J. Harding
Alistair J. Harding University of California, San Diego
Spahr C. Webb
Spahr C. Webb Lamont-Doherty Earth Observatory
Maurice A. Tivey
Maurice A. Tivey Woods Hole Oceanographic Institution
Donald W. Forsyth
Donald W. Forsyth Brown University
Mark A. Kendrick
Mark A. Kendrick Australian National University
Chuan-Zhou Liu
Chuan-Zhou Liu Chinese Academy of Sciences
Barbara E. John
Barbara E. John University of Wyoming

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