World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
44
Citations
13019
World Ranking
1573
National Ranking
609

Overview

Ellad B. Tadmor is affiliated with the University of Minnesota in the United States. Their research primarily spans the fields of materials science and engineering, with a particular focus on materials chemistry, atomic and molecular physics and optics, mechanical engineering, biomedical engineering, and mechanics of materials.

The scientist has contributed to a variety of main research topics including machine learning in materials science, microstructure and mechanical properties, graphene research and applications, 2D materials and applications, protein structure and dynamics, advanced materials characterization techniques, and probabilistic and robust engineering design.

Frequent co-authors collaborating with Ellad B. Tadmor include Daniel S. Karls, Ryan S. Elliott, Ilia Nikiforov, Mingjian Wen, and Mark K. Transtrum. Their collective work is often published in venues such as arXiv (Cornell University), The Journal of Chemical Physics, Journal of the Mechanics and Physics of Solids, Journal of Chemical Theory and Computation, and npj Computational Materials.

Notable recent papers authored by or associated with Ellad B. Tadmor include:

  • Roadmap on multiscale materials modeling, 2020, Modelling and Simulation in Materials Science and Engineering
  • CHARMM-GUI Nanomaterial Modeler for Modeling and Simulation of Nanomaterial Systems, 2021, Journal of Chemical Theory and Computation
  • Molecular dynamics predictions of thermomechanical properties of an epoxy thermosetting polymer, 2020, Polymer
  • Torsional periodic lattice distortions and diffraction of twisted 2D materials, 2022, Nature Communications
  • Accurate Force Fields for Atomistic Simulations of Oxides, Hydroxides, and Organic Hybrid Materials up to the Micrometer Scale, 2023, Journal of Chemical Theory and Computation

Best Publications

  • Quasicontinuum analysis of defects in solids

    E. B. Tadmor;M. Ortiz;R. Phillips

  • An adaptive finite element approach to atomic-scale mechanics—the quasicontinuum method

    V.B. Shenoy;R. Miller;E.b. Tadmor;D. Rodney

  • Atomic and electronic reconstruction at the van der Waals interface in twisted bilayer graphene

    Hyobin Yoo;Rebecca Engelke;Stephen Carr;Shiang Fang

  • The Quasicontinuum Method: Overview, applications and current directions

    Ronald E. Miller;E.B. Tadmor

  • Modeling Materials: Continuum, Atomistic and Multiscale Techniques

    Ellad B. Tadmor;Ronald E. Miller

  • A unified framework and performance benchmark of fourteen multiscale atomistic/continuum coupling methods

    Ronald E. Miller;Ellad B Tadmor

  • Atomic and electronic reconstruction at van der Waals interface in twisted bilayer graphene

    Hyobin Yoo;Rebecca Engelke;Stephen Carr;Shiang Fang

  • Quasicontinuum models of interfacial structure and deformation

    V. B. Shenoy;R. Miller;Ellad B Tadmor;R. Phillips

  • Mixed Atomistic and Continuum Models of Deformation in Solids

    E. B. Tadmor;Rob Phillips;M. Ortiz

  • Nanoindentation and incipient plasticity

    E. B. Tadmor;R. Miller;R. Phillips;M. Ortiz

  • A Peierls criterion for the onset of deformation twinning at a crack tip

    E.B. Tadmor;S. Hai

  • Mixed finite element and atomistic formulation for complex crystals

    E. B. Tadmor;G. S. Smith;N. Bernstein;E. Kaxiras

  • Quasicontinuum simulation of fracture at the atomic scale

    R. Miller;E. B. Tadmor;R. Phillips;M. Ortiz

  • A first-principles measure for the twinnability of FCC metals

    E.B. Tadmor;N. Bernstein

  • A Unified Interpretation of Stress in Molecular Systems

    Nikhil Chandra Admal;E. B. Tadmor

  • Tight-binding calculations of stacking energies and twinnability in fcc metals

    N. Bernstein;E. B. Tadmor

  • Finite-temperature quasicontinuum: molecular dynamics without all the atoms.

    L. M. Dupuy;E. B. Tadmor;R. E. Miller;R. Phillips

  • The potential of atomistic simulations and the knowledgebase of interatomic models

    E Tadmor;R Elliott;James P. Sethna;R Miller

  • Quasicontinuum models of fracture and plasticity

    R. Miller;M. Ortiz;R. Phillips;V. Shenoy

  • Continuum Mechanics and Thermodynamics: From Fundamental Concepts to Governing Equations

    Ellad B. Tadmor;Ronald E. Miller;Ryan S. Elliott

Frequent Co-Authors

Michael Ortiz
Michael Ortiz California Institute of Technology
Mitchell Luskin
Mitchell Luskin University of Minnesota
Efthimios Kaxiras
Efthimios Kaxiras Harvard University
James P. Sethna
James P. Sethna Cornell University
Philip Kim
Philip Kim Harvard University
Kenji Watanabe
Kenji Watanabe National Institute for Materials Science
Gyu-Chul Yi
Gyu-Chul Yi Seoul National University
Takashi Taniguchi
Takashi Taniguchi National Institute for Materials Science
Vivek B. Shenoy
Vivek B. Shenoy University of Pennsylvania
David Rodney
David Rodney Claude Bernard University Lyon 1

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