World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
64
Citations
23791
World Ranking
1596
National Ranking
520

Overview

Anthony J. C. Ladd is affiliated with the University of Florida in the United States and has contributed extensively to the field of engineering, with a particular focus on electrical and electronic engineering, environmental engineering, materials chemistry, computational mechanics, and condensed matter physics. Their work spans multiple interdisciplinary subfields and addresses a range of topics in both theoretical and applied research.

The scientist's research includes significant contributions to the understanding of CO2 sequestration and geologic interactions, machine learning applications in materials science, enhanced oil recovery techniques, groundwater flow and contamination studies, perovskite materials and their applications, chalcogenide semiconductor thin films, and fluid dynamics particularly related to turbulent flows.

Frequent coauthors collaborating with Anthony J. C. Ladd include Piotr Szymczak, Calvin Fai, Charles J. Hages, Vitalii Starchenko, and Filip Dutka, reflecting a pattern of ongoing research partnerships.

Key publication venues for their work encompass Chemical Geology, Journal of Fluid Mechanics, Proceedings of the National Academy of Sciences, Computational Geosciences, and the Annual Review of Chemical and Biomolecular Engineering.

  • Simulation of mineral dissolution at the pore scale with evolving fluid-solid interfaces: review of approaches and benchmark problem set, 2020, Computational Geosciences
  • Reactive Flows in Porous Media: Challenges in Theoretical and Numerical Methods, 2021, Annual Review of Chemical and Biomolecular Engineering
  • Time-dependent shapes of a dissolving mineral grain: Comparisons of simulations with microfluidic experiments, 2020, Chemical Geology
  • Dissolution of a cylindrical disk in Hele-Shaw flow: a conformal-mapping approach, 2020, Journal of Fluid Mechanics
  • Machine learning for enhanced semiconductor characterization from time-resolved photoluminescence, 2022, Joule

Best Publications

  • NUMERICAL SIMULATIONS OF PARTICULATE SUSPENSIONS VIA A DISCRETIZED BOLTZMANN EQUATION: PART 1. THEORETICAL FOUNDATION

    Anthony J. C. Ladd

  • Numerical Simulations of Particulate Suspensions via a Discretized Boltzmann Equation Part I. Theoretical Foundation

    Anthony J. C. Ladd

  • Numerical simulations of particulate suspensions via a discretized Boltzmann equation. Part 2. Numerical results

    Anthony J. C. Ladd

  • Lattice-Boltzmann Simulations of Particle-Fluid Suspensions

    A. J. C. Ladd;R. Verberg

  • New Monte Carlo method to compute the free energy of arbitrary solids. Application to the fcc and hcp phases of hard spheres

    Daan Frenkel;Anthony J. C. Ladd

  • Numerical Simulations of Particulate Suspensions via a Discretized Boltzmann Equation Part II. Numerical Results

    Anthony J. C. Ladd

  • High-strain-rate plastic flow studied via nonequilibrium molecular dynamics

    William G. Hoover;Anthony J. C. Ladd;Bill Moran

  • Moderate-Reynolds-number flows in ordered and random arrays of spheres

    Reghan J. Hill;Donald L. Koch;Anthony J. C. Ladd

  • Nonequilibrium molecular dynamics via Gauss's principle of least constraint

    Denis J. Evans;William G. Hoover;Bruce H. Failor;Bill Moran

  • The first effects of fluid inertia on flows in ordered and random arrays of spheres

    Reghan J. Hill;Donald L. Koch;Anthony J. C. Ladd

  • Lubrication corrections for lattice-Boltzmann simulations of particle suspensions.

    N.-Q. Nguyen;A. J. C. Ladd

  • Lattice thermal conductivity: A comparison of molecular dynamics and anharmonic lattice dynamics

    Anthony J. C. Ladd;Bill Moran;William G. Hoover

  • Hydrodynamic transport coefficients of random dispersions of hard spheres

    Anthony J. C. Ladd

  • Lennard-Jones triple-point bulk and shear viscosities. Green-Kubo theory, Hamiltonian mechanics, and nonequilibrium molecular dynamics

    William G. Hoover;William G. Hoover;Denis J. Evans;Denis J. Evans;Richard B. Hickman;Anthony J. C. Ladd

  • Lattice Boltzmann Simulations of Soft Matter Systems

    Burkhard Dünweg;Anthony J. C. Ladd

  • Inertial migration of neutrally buoyant particles in a square duct: An investigation of multiple equilibrium positions

    B. Chun;A. J. C. Ladd

  • Moderate Reynolds number flows through periodic and random arrays of aligned cylinders

    Donald L. Koch;Anthony J. C. Ladd

  • Short-time motion of colloidal particles: Numerical simulation via a fluctuating lattice-Boltzmann equation.

    A. J. C. Ladd

  • Triple-point coexistence properties of the lennard-jones system

    A.J.C. Ladd;L.V. Woodcock

  • Sedimentation of homogeneous suspensions of non-Brownian spheres

    Anthony J. C. Ladd

  • New Monte Carlo method to compute the free energy of arbitrary solids. Applicaton to the fcc and hcp phases of hard spheres

    D. Frenkel;A.J.C. Ladd

Frequent Co-Authors

William G. Hoover
William G. Hoover University of California, Davis
Daan Frenkel
Daan Frenkel University of Cambridge
John H. Kinney
John H. Kinney University of California, San Francisco
Donald L. Koch
Donald L. Koch Cornell University
Denis J. Evans
Denis J. Evans Australian National University
David A. Weitz
David A. Weitz Harvard University
T.G. Nieh
T.G. Nieh University of Tennessee at Knoxville
Jeffrey Wadsworth
Jeffrey Wadsworth Emory University
Nancy E. Lane
Nancy E. Lane University of California, Davis

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