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Dominic F. Lee

Researcher at Oak Ridge National Laboratory

Publications -  114
Citations -  6866

Dominic F. Lee is an academic researcher from Oak Ridge National Laboratory. The author has contributed to research in topics: Pulsed laser deposition & Texture (crystalline). The author has an hindex of 38, co-authored 114 publications receiving 6729 citations. Previous affiliations of Dominic F. Lee include University of Tennessee.

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High critical current density superconducting tapes by epitaxial deposition of YBa2Cu3Ox thick films on biaxially textured metals

TL;DR: Deposited conductors made using this technique offer a potential route for the fabrication of long lengths of high‐Jc wire capable of carrying high currents in high magnetic fields and at elevated temperatures.
Journal Article

High critical current density superconducting tapes by epitaxial deposition of YBa2Cu3Ox thick films on biaxially textured metals

TL;DR: In this article, a method to obtain long lengths of flexible, biaxially oriented substrates with smooth, chemically compatible surfaces for epitaxial growth of high-temperature superconductors is reported.
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Epitaxial YBa2Cu3O7 on Biaxially Textured Nickel (001): An Approach to Superconducting Tapes with High Critical Current Density

TL;DR: In this article, an inplane aligned, c axis-oriented YBa2Cu3O7 (YBCO) films with superconducting critical current densities Jc as high as 700,000 amperes per square centimeter at 77 kelvin have been grown on thermomechanically rolled-textured nickel (001) tapes by pulsed-laser deposition.
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High-performance high-TC superconducting wires.

TL;DR: Benefits of the critical current in self-field as well as excellent retention of this current in high applied magnetic fields were achieved in the thick films via incorporation of a periodic array of extended columnar defects, composed of self-aligned nanodots of nonsuperconducting material extending through the entire thickness of the film.
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Growth of biaxially textured buffer layers on rolled-Ni substrates by electron beam evaporation

TL;DR: In this article, two buffer layer architectures were developed on rolled-Ni substrates using an electron beam evaporation technique, one consisting of an epitaxial laminate of CeO 2 /Pd/Ni and the other consisting of a YSZ/CeO 2/Ni.