World's Best Scientists 2026 revealed!

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Materials Science

D-Index
59
Citations
14291
World Ranking
7302
National Ranking
1810

Overview

Eric E. Hellstrom is affiliated with Florida State University in the United States. Their research primarily spans the fields of Physics and Astronomy as well as Materials Science. Within these areas, their subfield expertise includes Condensed Matter Physics, Electronic, Optical and Magnetic Materials, Biomedical Engineering, Strategy and Management, and Atomic and Molecular Physics, and Optics.

The scientist's work focuses on several topics related to superconductivity and material properties. Key research themes include Physics of Superconductivity and Magnetism, Iron-based superconductors research, Superconductivity in MgB2 and Alloys, Superconducting Materials and Applications, Intellectual Capital and Performance Analysis, Magnetic and transport properties of perovskites and related materials, and Corporate Taxation and Avoidance.

Among their recent publications are:

  • Quantum coherence tomography of light-controlled superconductivity, 2022, Nature Physics
  • Artificially engineered nanostrain in FeSexTe1-x superconductor thin films for supercurrent enhancement, 2020, NPG Asia Materials
  • Synthesis routes to eliminate oxide impurity segregation and their influence on intergrain connectivity in K-doped BaFe2As2 polycrystalline bulks, 2020, Superconductor Science and Technology
  • Effects of Wire Diameter and Filament Size on the Processing Window of Bi-2212 Round Wire, 2021, IEEE Transactions on Applied Superconductivity
  • Correlation of critical current density to quasi-biaxial texture and grain boundary cleanliness in fully dense Bi-2212 wires, 2020, Superconductor Science and Technology

Frequent co-authors include:

  • D. C. Larbalestier
  • Fumitake Kametani
  • Jianyi Jiang
  • Yesusa Collantes
  • Chang-Beom Eom

Eric E. Hellstrom has published multiple papers in various scientific venues, with the most frequent being Superconductor Science and Technology, IEEE Transactions on Applied Superconductivity, arXiv (Cornell University), Nature Physics, and Applied Physics Express.

Best Publications

  • Strongly linked current flow in polycrystalline forms of the superconductor MgB2.

    D. C. Larbalestier;L. D. Cooley;M. O. Rikel;A. A. Polyanskii

  • Strongly linked current flow in polycrystalline forms of the new superconductor MgB2

    D.C. Larbalestier;M.O. Rikel;L.D. Cooley;A.A. Polyanskii

  • Thin Film Magnesium Boride Superconductor with Very High Critical Current Density and Enhanced Irreversibility Field

    C.B. Eom;M.K. Lee;J.H. Choi;L. Belenky

  • A trapped field of 17.6 T in melt-processed, bulk Gd-Ba-Cu-O reinforced with shrink-fit steel

    J. H. Durrell;A. R. Dennis;J. Jaroszynski;M. D. Ainslie

  • Isotropic round-wire multifilament cuprate superconductor for generation of magnetic fields above 30 T

    D. C. Larbalestier;J. Jiang;U. P. Trociewitz;F. Kametani

  • New Fe-based superconductors: properties relevant for applications

    M Putti;I Pallecchi;E Bellingeri;M Tropeano

  • Very high upper critical fields in MgB2 produced by selective tuning of impurity scattering

    A Gurevich;S Patnaik;V Braccini;K H Kim

  • New Fe-based superconductors: properties relevant for applications

    M Putti;I Pallecchi;E Bellingeri;M R Cimberle

  • Template engineering of Co-doped BaFe2As2 single-crystal thin films

    S. Lee;J. Jiang;C. T. Nelson;C. W. Bark

  • Template engineering of Co-doped BaFe2As2 single-crystal thin films.

    S. Lee;J. Jiang;Y. Zhang;C. W. Bark

  • High Field Magnets With HTS Conductors

    H W Weijers;U P Trociewitz;W D Markiewicz;J Jiang

  • High intergrain critical current density in fine-grain (Ba0.6K0.4)Fe2As2 wires and bulks.

    J. D. Weiss;C. Tarantini;J. Jiang;F. Kametani

  • Improved upper critical field in bulk-form magnesium diboride by mechanical alloying with carbon

    Benjamin J. Senkowicz;Jonathan E. Giencke;Satyabrata Patnaik;Chang-Beom Eom

  • Improved Hc2 in Bulk-Form Magnesium Diboride by Mechanical Alloying With Carbon

    B. J. Senkowicz;J. E. Giencke;S. Patnaik;C. B. Eom

  • Electronic anisotropy, magnetic field-temperature phase diagram and their dependence on resistivity in c-axis oriented MgB2 thin films

    S Patnaik;L D Cooley;A Gurevich;A A Polyanskii

  • Weak-link behavior of grain boundaries in superconducting Ba(Fe1−xCox)2As2 bicrystals

    S. Lee;J. Jiang;J. D. Weiss;C. M. Folkman

  • Influence of boron powder purification on the connectivity of bulk MgB2

    J Jiang;B J Senkowicz;D C Larbalestier;E E Hellstrom

  • Evaluation of connectivity, flux pinning, and upper critical field contributions to the critical current density of bulk pure and SiC-alloyed MgB2

    A. Matsumoto;H. Kumakura;H. Kitaguchi;B. J. Senkowicz

  • The behavior of grain boundaries in the Fe-based superconductors

    J. H. Durrell;C. B. Eom;A. Gurevich;E. E. Hellstrom

  • Doubled critical current density in Bi-2212 round wires by reduction of the residual bubble density

    J Jiang;W L Starch;M Hannion;F Kametani

  • Strongly Linked Current Flow in Polycrystalline Forms of the Superconductor MgB2.

    D. C. Larbalestier

Frequent Co-Authors

David C. Larbalestier
David C. Larbalestier Florida State University
Chang-Beom Eom
Chang-Beom Eom University of Wisconsin–Madison
Sanghan Lee
Sanghan Lee Gwangju Institute of Science and Technology
Alex Gurevich
Alex Gurevich Old Dominion University
Chung Wung Bark
Chung Wung Bark Gachon University
Xiaoqing Pan
Xiaoqing Pan University of California, Irvine
Seung-Hyub Baek
Seung-Hyub Baek Korea Institute of Science and Technology
Ho Won Jang
Ho Won Jang Seoul National University
Stefano Lupi
Stefano Lupi Sapienza University of Rome
Paul M. Voyles
Paul M. Voyles University of Wisconsin–Madison

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