Goleta, CA, United States of America

Julia S Fleming


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 16(Granted Patents)


Company Filing History:


Years Active: 1993

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1 patent (USPTO):Explore Patents

Title: An Insight into Inventor Julia S. Fleming

Introduction

Julia S. Fleming, an innovative inventor based in Goleta, California, has made significant contributions to the field of materials science, particularly with her patented methods related to crystallographic boundary junctions in oxides. Her work emphasizes the creation of repeatable and reproducible junctions that hold promise for various applications in superconductivity.

Latest Patents

Fleming holds a patent for a "Method for producing crystallographic boundary junctions in oxide." This patent describes a unique technique for generating grain-boundary junctions by forming a film on crystalline substrates with intersecting faces. The preferred method includes etching a single crystal substrate to form 'V'-grooves and growing an epitaxial superconducting film on these facets. Her invention allows for the creation of valuable devices through the patterned and etched areas at the boundary junctions.

Career Highlights

Julia S. Fleming has demonstrated her expertise through her work with Superconductor Technologies Inc., where she collaborates with her colleagues to advance the understanding and application of superconducting materials. Her pioneering research and innovative methods are paving the way for the development of new technologies in the field of superconductivity.

Collaborations

A notable collaborator of Julia S. Fleming is Timothy W. James, who works alongside her at Superconductor Technologies Inc. Their partnership highlights the significance of teamwork in achieving groundbreaking advancements in materials science and engineering.

Conclusion

Julia S. Fleming represents the spirit of innovation and perseverance in the world of inventions and patents. Her contribution to the development of crystallographic boundary junction techniques stands as a testament to her dedication and expertise in her field. As she continues to explore new frontiers in superconductivity, her future endeavors are bound to make a considerable impact on technology and industry.

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