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Environmental Sciences

D-Index
41
Citations
7434
World Ranking
7649
National Ranking
2729

Overview

Marcia B. Baker is affiliated with the University of Washington in the United States. Their research primarily focuses on Physics and Astronomy, with a strong emphasis on Nuclear and High Energy Physics. Additional subfields of study include Condensed Matter Physics, Atomic and Molecular Physics, and Optics, as well as Biomedical Engineering and Electrical and Electronic Engineering.

Their work covers a range of topics related to high-energy particle collisions and quantum chromodynamics, as well as theoretical and experimental particle physics. Other areas of study encompass the physics of superconductivity and magnetism, superconducting materials, particle accelerators, free-electron lasers, and magnetic confinement fusion research.

The scientist has authored several papers published mainly in well-known physics journals and conference proceedings. Notable recent publications include:

  • Unveiling confinement in pure gauge SU(3): flux tubes, fields, and magnetic currents (2022, The European Physical Journal C)
  • Unveiling SU(3) flux tubes at nonzero temperature: electric fields and magnetic currents (2024, The European Physical Journal C)
  • Unveiling the flux tube structure in full QCD (2025, The European Physical Journal C)
  • The flux tube profile in full QCD (2022, Proceedings of The 38th International Symposium on Lattice Field Theory - PoS(LATTICE2021))
  • Field, current, and charge distribution in a pure gauge SU(3) flux tube (2022, EPJ Web of Conferences)

The European Physical Journal C is the most frequent publication venue for Baker's work, alongside contributions to arXiv, EPJ Web of Conferences, and the Proceedings of a major international lattice field theory symposium.

Frequent collaborators include V. Chelnokov, Alessandro Papa, Leonardo Cosmai, Francesca Cuteri, and Paolo Cea, with multiple joint publications reflecting ongoing cooperative research efforts.

  • V. Chelnokov
  • Alessandro Papa
  • Leonardo Cosmai
  • Francesca Cuteri
  • Paolo Cea

Marcia B. Baker's research integrates theoretical modeling and computational approaches to investigate flux tubes, magnetic currents, and electric fields in quantum chromodynamics. This work contributes to understanding confinement mechanisms in strong interaction physics.

Best Publications

  • Why Is Climate Sensitivity So Unpredictable

    Gerard H. Roe;Marcia B. Baker

  • Cloud Microphysics and Climate

    M. B. Baker

  • Effect of precipitation on the albedo susceptibility of clouds in the marine boundary layer

    Robert Pincus;Marcia B. Baker

  • Absorption coefficient of atmospheric aerosol: a method for measurement.

    Chin-I Lin;Marcia Baker;Robert J. Charlson

  • The influence of entrainment on the evolution of cloud droplet spectra: I. A model of inhomogeneous mixing

    M. B. Baker;R. G. Corbin;J. Latham

  • Centennial glacier retreat as categorical evidence of regional climate change

    Gerard H. Roe;Marcia B. Baker;Florian Herla

  • Small-scale cloud processes and climate.

    Marcia B. Baker;Thomas Peter

  • The Influence of Diffusional Growth Rates On the Charge Transfer Accompanying Rebounding Collisions Between Ice Crystals and Soft Hailstones

    B. Baker;M. B. Baker;E. R. Jayaratne;J. Latham

  • When dry air is too humid

    Thomas Peter;Claudia Marcolli;Peter Spichtinger;Thierry Corti

  • The Evolution of Droplet Spectra and the Rate of Production of Embryonic Raindrops in Small Cumulus Clouds

    M. B. Baker;J. Latham

  • Bistability of CCN concentrations and thermodynamics in the cloud-topped boundary layer

    Marcia B. Baker;Robert J. Charlson

  • Turbulent Mixing, Spectral Evolution and Dynamics in a Warm Cumulus Cloud

    J. B. Jensen;P. H. Austin;M. B. Baker;A. M. Blyth

  • A computational study of the relationships linking lightning frequency and other thundercloud parameters

    Marcia B. Baker;Hugh J. Christian;John Latham

  • Buoyancy reversal and cloud-top entrainment instability

    Steven T. Siems;Christopher S. Bretherton;Marcia B. Baker;Shenqyang Shy

  • Entrainment and Detrainment in Cumulus Clouds

    Gregory R. Taylor;Marcia B. Baker

  • Characteristics of Cumulus Band Clouds off the Coast of Hawaii

    Graciela B. Raga;Jørgen B. Jensen;Marcia B. Baker

  • The Effects of Turbulent Mixing in Clouds

    M. B. Baker;R. E. Breidenthal;T. W. Choularton;J. Latham

  • Precipitation and radiation modeling in a general circulation model: Introduction of cloud microphysical processes

    Olivier Boucher;Hervé Le Treut;Marcia B. Baker

  • Relationships between lightning activity and various thundercloud parameters: satellite and modelling studies

    M.B Baker;A.M Blyth;H.J Christian;J Latham

  • Small-Scale Variability in Warm Continental Cumulus Clouds

    P. H. Austin;M. B. Baker;A. M. Blyth;J. B. Jensen

Frequent Co-Authors

John Latham
John Latham University of Manchester
Gerard H. Roe
Gerard H. Roe University of Washington
Thomas Peter
Thomas Peter ETH Zurich
David S. Battisti
David S. Battisti University of Washington
Alan M. Blyth
Alan M. Blyth University of Leeds
Robert J. Charlson
Robert J. Charlson University of Washington
Thomas Choularton
Thomas Choularton University of Manchester
Christopher S. Bretherton
Christopher S. Bretherton University of Washington
Hugh J. Christian
Hugh J. Christian University of Alabama in Huntsville
Robert Pincus
Robert Pincus University of Colorado Boulder

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