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Physics

D-Index
76
Citations
41592
World Ranking
3278
National Ranking
1552

Research.com Recognitions

  • 2001 - Fellow of American Physical Society (APS) Citation For developments which led to a quantitative theory and analysis of extended xray absorption fine structure

Overview

John J. Rehr is affiliated with the University of Washington in the United States and has a research focus encompassing physics, astronomy, and materials science. Their work spans several intersecting fields and subfields, contributing extensively to the study of chemical physics and spectroscopy.

The main fields of study for this scientist include:

  • Physics and Astronomy
  • Materials Science

Within these fields, the subfields of study are:

  • Materials Chemistry
  • Radiation
  • Surfaces, Coatings and Films
  • Atomic and Molecular Physics, and Optics
  • Electrical and Electronic Engineering

Their main research topics cover:

  • X-ray Spectroscopy and Fluorescence Analysis
  • Electron and X-Ray Spectroscopy Techniques
  • Machine Learning in Materials Science
  • Advanced Chemical Physics Studies
  • X-ray Diffraction in Crystallography
  • Semiconductor materials and devices
  • Atomic and Molecular Physics

John J. Rehr has published multiple papers including the following recent works:

  • "2p x-ray absorption spectroscopy of 3d transition metal systems" (2021), published in Journal of Electron Spectroscopy and Related Phenomena
  • "Advanced calculations of X-ray spectroscopies with FEFF10 and Corvus" (2021), published in Journal of Synchrotron Radiation
  • "Database of ab initio L-edge X-ray absorption near edge structure" (2021), published in Scientific Data
  • "Equation of motion coupled-cluster cumulant approach for intrinsic losses in x-ray spectra" (2020), published in The Journal of Chemical Physics
  • "Real-Time Coupled-Cluster Approach for the Cumulant Green's Function" (2020), published in Journal of Chemical Theory and Computation

Frequent coauthors collaborating with John J. Rehr include:

  • J. J. Kas
  • Fernando D. Vila
  • Karol Kowalski
  • Bo Peng
  • Nicholas P. Bauman

Their work has been published in a variety of scientific venues, with notable recurring contributions to:

  • arXiv (Cornell University)
  • Physical Review B
  • Journal of Chemical Theory and Computation
  • The Journal of Chemical Physics
  • Journal of Electron Spectroscopy and Related Phenomena

John J. Rehr received recognition as a Fellow of the American Physical Society (APS) in 2001, with a citation for developments leading to a quantitative theory and analysis of extended x-ray absorption fine structure.

Best Publications

  • REAL-SPACE MULTIPLE-SCATTERING CALCULATION AND INTERPRETATION OF X-RAY-ABSORPTION NEAR-EDGE STRUCTURE

    A L. Ankudinov;Bruce D. Ravel;J J. Rehr;S D. Conradson

  • Theoretical approaches to x-ray absorption fine structure

    J. J. Rehr;R. C. Albers

  • Multiple-scattering calculations of x-ray-absorption spectra

    S. I. Zabinsky;J. J. Rehr;A. Ankudinov;R. C. Albers

  • Theoretical X-ray Absorption Fine Structure Standards

    J. J. Rehr;J. J. Rehr;J. Mustre de Leon;S. I. Zabinsky;S. I. Zabinsky;R. C. Albers;R. C. Albers

  • High-order multiple-scattering calculations of x-ray-absorption fine structure.

    J. J. Rehr;J. J. Rehr;R. C. Albers;R. C. Albers;S. I. Zabinsky;S. I. Zabinsky

  • Parameter-free calculations of X-ray spectra with FEFF9

    John J. Rehr;Joshua J. Kas;Fernando D. Vila;Micah P. Prange;Micah P. Prange

  • Ab initio curved-wave x-ray-absorption fine structure.

    J. Mustre de Leon;J. J. Rehr;S. I. Zabinsky;R. C. Albers

  • Near-edge x-ray-absorption fine structure of Pb : a comparison of theory and experiment

    M Newville;P Livins;Y Yacoby;JJ Rehr

  • Analysis of multiple-scattering XAFS data using theoretical standards

    M. Newville;B. Ravel;D. Haskel;J.J. Rehr

  • Scattering-matrix formulation of curved-wave multiple-scattering theory: Application to x-ray-absorption fine structure.

    J. J. Rehr;R. C. Albers

  • TI K-EDGE XANES STUDIES OF TI COORDINATION AND DISORDER IN OXIDE COMPOUNDS: COMPARISON BETWEEN THEORY AND EXPERIMENT

    François Farges;Gordon E. Brown;J. J. Rehr

  • RELATIVISTIC CALCULATIONS OF SPIN-DEPENDENT X-RAY-ABSORPTION SPECTRA

    A. L. Ankudinov;J. J. Rehr

  • Ab initio theory and calculations of X-ray spectra

    John J. Rehr;Joshua J. Kas;Micah P. Prange;Adam P. Sorini

  • Extended x-ray absorption fine structure Debye-Waller factors. I. Monatomic crystals

    E. Sevillano;H. Meuth;J. J. Rehr

  • Parallel calculation of electron multiple scattering using Lanczos algorithms

    A. L. Ankudinov;C. E. Bouldin;J. J. Rehr;J. Sims

  • Progress in the theory and interpretation of XANES

    J.J. Rehr;A.L. Ankudinov

  • EXTENDED X-RAY ABSORPTION FINE STRUCTURE (EXAFS) ANALYSIS OF DISORDER AND MULTIPLE-SCATTERING IN COMPLEX CRYSTALLINE SOLIDS

    P. A. O'Day;J. J. Rehr;S. I. Zabinsky;G. E. Jr. Brown

  • Dynamic screening effects in x-ray absorption spectra

    A. L. Ankudinov;A. I. Nesvizhskii;J. J. Rehr

  • Thermal expansion and x-ray-absorption fine-structure cumulants.

    A. I. Frenkel;J. J. Rehr

  • Bethe-Salpeter equation calculations of core excitation spectra.

    J. Vinson;J. J. Rehr;J. J. Kas;E. L. Shirley

Frequent Co-Authors

Edward A. Stern
Edward A. Stern University of Washington
Heiko Wende
Heiko Wende University of Duisburg-Essen
Anatoly I. Frenkel
Anatoly I. Frenkel Stony Brook University
Simon R. Bare
Simon R. Bare SLAC National Accelerator Laboratory
Judith C. Yang
Judith C. Yang Brookhaven National Laboratory
Matthew Newville
Matthew Newville University of Chicago
Eric A. Stach
Eric A. Stach University of Pennsylvania
Ralph G. Nuzzo
Ralph G. Nuzzo University of Illinois at Urbana-Champaign
Charles S. Fadley
Charles S. Fadley University of California, Davis
Kristin A. Persson
Kristin A. Persson Lawrence Berkeley National Laboratory

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