World's Best Scientists 2026 revealed!

D-Index & Metrics

Earth Science

D-Index
39
Citations
6985
World Ranking
6058
National Ranking
2184

Overview

Jennifer MacKinnon is affiliated with the University of California, San Diego in the United States. Their research focuses primarily on Earth and Planetary Sciences with a strong emphasis on Oceanography. Within this field, they have contributed significantly to subfields such as Atmospheric Science, Global and Planetary Change, Earth-Surface Processes, and Environmental Chemistry.

The scientist's recent scholarly output includes several published papers that address diverse aspects of oceanographic and atmospheric processes. Some notable publications are:

  • "Internal wave-driven mixing: governing processes and consequences for climate" (2020) in Nature Reviews Earth & Environment
  • "A warm jet in a cold ocean" (2021) in Nature Communications
  • "Topographic Form Drag on Tides and Low-Frequency Flow: Observations of Nonlinear Lee Waves over a Tall Submarine Ridge near Palau" (2020) in Journal of Physical Oceanography
  • "Oceanic turbulence from a planktonic perspective" (2021) in Limnology and Oceanography
  • "Bay of Bengal Intraseasonal Oscillations and the 2018 Monsoon Onset" (2021) in Bulletin of the American Meteorological Society

Jennifer MacKinnon has frequently collaborated with several co-authors in their research projects. These include:

  • Matthew H. Alford
  • Amy F. Waterhouse
  • Gunnar Voet
  • Andrew J. Lucas
  • Jonathan D. Nash

The scientist has published extensively in various academic venues. The most recurrent publication platforms are:

  • Journal of Physical Oceanography
  • The Journal of the Acoustical Society of America
  • Geophysical Research Letters
  • Journal of Geophysical Research Oceans
  • Bulletin of the American Meteorological Society

Their work covers multiple interconnected topics related to oceanography and atmospheric science. Main topics include:

  • Oceanographic and Atmospheric Processes
  • Ocean Waves and Remote Sensing
  • Arctic and Antarctic ice dynamics
  • Tropical and Extratropical Cyclones Research
  • Marine and coastal ecosystems
  • Climate variability and models
  • Methane Hydrates and Related Phenomena

Throughout their career, Jennifer MacKinnon has contributed research that intersects climate science, ocean dynamics, and environmental studies, making significant input in understanding marine and atmospheric interactions at regional and global scales.

Best Publications

  • The formation and fate of internal waves in the South China Sea

    Matthew H. Alford;Matthew H. Alford;Thomas Peacock;Jennifer A. MacKinnon;Jonathan D. Nash

  • Global Patterns of Diapycnal Mixing from Measurements of the Turbulent Dissipation Rate

    Amy F. Waterhouse;Jennifer A. MacKinnon;Jonathan D. Nash;Matthew H. Alford

  • Near-Inertial Internal Gravity Waves in the Ocean

    Matthew H. Alford;Jennifer A. MacKinnon;Harper L. Simmons;Jonathan D. Nash

  • Climate Process Team on Internal Wave–Driven Ocean Mixing

    Jennifer A. MacKinnon;Zhongxiang Zhao;Caitlin B. Whalen;Amy F. Waterhouse

  • Spatial and temporal variability of global ocean mixing inferred from Argo profiles

    C. B. Whalen;L. D. Talley;J. A. MacKinnon

  • Energy Flux and Dissipation in Luzon Strait: Two Tales of Two Ridges

    Matthew H. Alford;Jennifer A. MacKinnon;Jonathan D. Nash;Harper Simmons

  • Mixing on the Late-Summer New England Shelf—Solibores, Shear, and Stratification

    J. A. MacKinnon;M. C. Gregg

  • Subtropical catastrophe: Significant loss of low-mode tidal energy at 28.9°

    J. A. MacKinnon;K. B. Winters

  • Long-Range Propagation of the Semidiurnal Internal Tide from the Hawaiian Ridge

    Zhongxiang Zhao;Matthew H. Alford;Jennifer A. MacKinnon;Rob Pinkel

  • Internal wave-driven mixing: governing processes and consequences for climate

    Caitlin B. Whalen;Casimir de Lavergne;Alberto C. Naveira Garabato;Jody M. Klymak

  • Internal waves across the Pacific

    M. H. Alford;J. A. MacKinnon;Zhongxiang Zhao;Rob Pinkel;Rob Pinkel

  • Parametric Subharmonic Instability of the Internal Tide at 29°N

    Jennifer A. MacKinnon;Matthew H. Alford;Oliver M. T. Sun;Robert Pinkel

  • Estimating the Mean Diapycnal Mixing Using a Finescale Strain Parameterization

    Caitlin B. Whalen;Jennifer A. MacKinnon;Lynne D. Talley;Amy F. Waterhouse

  • Large-scale impacts of the mesoscale environment on mixing from wind-driven internal waves

    C. B. Whalen;J. A. MacKinnon;L. D. Talley

  • Three-Dimensional Double-Ridge Internal Tide Resonance in Luzon Strait

    Maarten C. Buijsman;Jody M. Klymak;Sonya Legg;Matthew H. Alford

  • Shear and Baroclinic Energy Flux on the Summer New England Shelf

    J. A. MacKinnon;M. C. Gregg

  • A Spectral Model for Process Studies of Rotating, Density-Stratified Flows

    K. B. Winters;J. A. MacKinnon;Bren Mills

  • Spring Mixing: Turbulence and Internal Waves during Restratification on the New England Shelf

    J. A. MacKinnon;M. C. Gregg

  • Near-Inertial Waves on the New England Shelf: The Role of Evolving Stratification, Turbulent Dissipation, and Bottom Drag

    J. A. MacKinnon;M. C. Gregg

  • Spatial and Temporal Patterns of Small-Scale Mixing in Drake Passage

    Andrew F. Thompson;Sarah T. Gille;J. A. MacKinnon;Janet Sprintall

Frequent Co-Authors

Matthew H. Alford
Matthew H. Alford University of California, San Diego
Robert Pinkel
Robert Pinkel University of California, San Diego
Jonathan D. Nash
Jonathan D. Nash Oregon State University
Harper L. Simmons
Harper L. Simmons University of Alaska Fairbanks
Jody M. Klymak
Jody M. Klymak University of Victoria
Daniel L. Rudnick
Daniel L. Rudnick Scripps Institution of Oceanography
Luc Rainville
Luc Rainville University of Washington
Luca Centurioni
Luca Centurioni University of California, San Diego
Amala Mahadevan
Amala Mahadevan Woods Hole Oceanographic Institution
Janet Sprintall
Janet Sprintall University of California, San Diego

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