Alexandra Boltasseva

West Lafayette, IN, United States of America

Alexandra Boltasseva

wikipedia
USPTO Granted Patents = 22 

Average Co-Inventor Count = 5.2

ph-index = 3

Forward Citations = 24(Granted Patents)


Company Filing History:


Years Active: 2016-2025

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22 patents (USPTO):Explore Patents

Title: Innovations by Alexandra Boltasseva: Contributions to Machine Learning and Plasmonic Materials

Introduction

Alexandra Boltasseva, based in West Lafayette, IN, is an accomplished inventor known for her significant contributions to the fields of optics and nanotechnology. With a remarkable portfolio of 21 patents, she is driving innovations that are revolutionizing how images are captured and processed, as well as enhancing chemical processes using advanced materials.

Latest Patents

One of her notable patents is the "Machine Learning Assisted Super Resolution Microscopy." This invention presents a method for generating super-resolved images of photon-emitting particles by utilizing a machine-learning platform. The platform processes pixel-based sparse autocorrelation data to produce improved images, surpassing the resolution limitations of classical optical microscopes limited by the Abbe diffraction limit.

Another groundbreaking patent is for "Plasmonic Metal Nitride and Transparent Conductive Oxide Nanostructures for Plasmon Assisted Catalysis." This patent details a nanostructured material system designed to efficiently collect photo-excited carriers. It utilizes plasmonic metal nitride and transparent conductive oxide elements to enhance catalytic activities through unique optical phenomena occurring at resonance frequencies.

Career Highlights

Alexandra works with the Purdue Research Foundation, where her innovative efforts contribute to cutting-edge research and development in her field. Her work focuses on merging advanced imaging techniques with nanotechnology to enhance both scientific understanding and practical applications.

Collaborations

She collaborates with esteemed colleagues, including Vladimir M Shalaev and Alexander V Kildishev, further expanding the scope of her research and patent contributions. These partnerships foster a collaborative environment that fuels innovation and leads to the development of transformative technologies.

Conclusion

In summary, Alexandra Boltasseva's work exemplifies the intersection of machine learning, nanotechnology, and optics. Her patents are not only foundational in their respective fields but also illustrate her commitment to advancing technology to solve complex challenges. Through her research at the Purdue Research Foundation and her collaborations, she continues to push the boundaries of what is possible in innovation.

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