Alexandria, VA, United States of America

Anthony Romano Clabeau

USPTO Granted Patents = 1 

Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: The Innovations of Anthony Romano Clabeau

Introduction

Anthony Romano Clabeau is an accomplished inventor based in Alexandria, VA. He has made significant contributions to the field of optical devices, particularly through his innovative work with chalcogenide thin films. His expertise has led to advancements that enhance the functionality of optical devices.

Latest Patents

Clabeau holds a patent for "Thermally tuned optical devices containing chalcogenide thin films." This patent describes tunable devices and methods for fine-tuning the optical responses of thin film devices post-fabrication. The approach modifies the refractive indices of the chalcogenide glass thin films incorporated into the devices. By utilizing changes in the refractive indices, Clabeau's invention allows for precise adjustments to the optical responses of these devices. Thermal annealing is a key technique used in this process, providing good uniformity in large-area devices and applicability to multi-layer structures.

Career Highlights

Clabeau's career is marked by his dedication to advancing optical technology. His work has not only resulted in a patent but has also contributed to the broader understanding of how thermal processes can enhance device performance. His role at the USA as Represented by Secretary of the Navy underscores his commitment to innovation in the field.

Collaborations

Clabeau has collaborated with notable colleagues, including Jesse A Frantz and Jason D Myers. These partnerships have likely enriched his research and development efforts, fostering an environment of shared knowledge and innovation.

Conclusion

Anthony Romano Clabeau's contributions to the field of optical devices through his patented innovations demonstrate his expertise and commitment to advancing technology. His work continues to influence the development of tunable optical devices, showcasing the importance of innovation in this area.

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