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Research.com Recognitions

  • 2002 - Fellow of American Physical Society (APS) Citation For research on surface growth of metals, insulators, and semiconductors, leading to a fundamental understanding of interatomic interactions and atomic processes, particularly nucleation and growth

Overview

John A. Venables is affiliated with Arizona State University in the United States. Their research contributions are recognized in the field of physics, particularly focusing on surface growth phenomena.

In 2002, Venables was awarded the Fellow of the American Physical Society (APS) for research on surface growth of metals, insulators, and semiconductors. The citation highlights work leading to a fundamental understanding of interatomic interactions and atomic processes, specifically nucleation and growth.

Details about their published papers, frequent co-authors, publication venues, and specific subfields or main topics of study are not available.

Best Publications

  • Nucleation and growth of thin films

    J A Venables;G D T Spiller;M Hanbucken

  • Rate equation approaches to thin film nucleation kinetics

    J. A. Venables

  • Electron back-scattering patterns—A new technique for obtaining crystallographic information in the scanning electron microscope

    J. A. Venables;C. J. Harland

  • Atomic processes in crystal growth

    John A Venables;John A Venables

  • Deformation twinning in face-centred cubic metals

    J. A. Venables

  • Nucleation and growth of supported clusters at defect sites: Pd/MgO(001)

    G. Haas;A. Menck;H. Brune;J. V. Barth

  • Microstructural evolution during the heteroepitaxy of Ge on vicinal Si(100)

    Mohan Krishnamurthy;Jeffery Drucker;J. A. Venables

  • Nucleation, growth and the intermediate layer in Ag/Si(100) and Ag/Si(111)

    M. Hanbücken;M. Futamoto;J.A. Venables

  • Direct observation of the nucleation and growth modes of Ag/Si(111)

    J.A. Venables;J. Derrien;A.P. Janssen

  • The nucleation and propagation of deformation twins

    J.A Venables

  • Nucleation on substrates from the vapour phase

    D.R. Frankl;J.A. Venables

  • Electron diffraction and the structure of α-N2

    J. A. Venables;C. A. English

  • The electron microscopy of deformation twinning

    J.A Venables

  • The Structure of the Diatomic Molecular Solids

    C. A. English;J. A. Venables

  • Complete and incomplete wetting in multilayer adsorption: high-energy electron-diffraction studies of Xe, Ar, N2, and Ne films on graphite

    J. L. Seguin;J. Suzanne;M. Bienfait;J. G. Dash

  • Structural studies of xenon and krypton solid monolayers on graphite using transmission electron diffraction

    P.S. Schabes-Retchkiman;J.A. Venables

  • Accurate microcrystallography using electron back-scattering patterns

    J. A. Venables;R. Bin-jaya

  • Nucleation and growth processes in thin film formation

    J. A. Venables

  • Nucleation and growth of rare-gas crystals

    J. A. Venables;D. J. Ball

  • Energies controlling nucleation and growth processes: The case of Ag/W(110).

    G. W. Jones;J. M. Marcano;Jens Kehlet Nørskov;J. A. Venables

  • A LEED study of adsorbed neon on graphite

    S. Calisti;J. Suzanne;J.A. Venables

Frequent Co-Authors

Harald Brune
Harald Brune École Polytechnique Fédérale de Lausanne
Jingyue Liu
Jingyue Liu Arizona State University
John H. Harding
John H. Harding University of Sheffield
Peter A. Crozier
Peter A. Crozier Arizona State University
Klaus Kern
Klaus Kern Max Planck Society
Ying Li
Ying Li Texas A&M University
Johannes V. Barth
Johannes V. Barth Technical University of Munich
B.A. Joyce
B.A. Joyce Imperial College London
Jian-Min Zuo
Jian-Min Zuo University of Illinois at Urbana-Champaign
Livia Giordano
Livia Giordano University of Milano-Bicocca

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