Vadnais Heights, MN, United States of America

Nathan Charles Lindquist


Average Co-Inventor Count = 5.1

ph-index = 2

Forward Citations = 32(Granted Patents)


Location History:

  • Saint Paul, MN (US) (2014)
  • Vadnais Heights, MN (US) (2015 - 2016)

Company Filing History:


Years Active: 2014-2016

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3 patents (USPTO):

Title: Nathan Charles Lindquist: Innovator in Plasmonics and Metamaterials

Introduction

Nathan Charles Lindquist is a notable inventor based in Vadnais Heights, MN (US). He has made significant contributions to the field of plasmonics and metamaterials, holding a total of 3 patents. His work focuses on the replication of patterned thin-film structures, which has important applications in advanced materials science.

Latest Patents

One of Nathan's latest patents is titled "Replication of patterned thin-film structures for use in plasmonics and metamaterials." This invention provides templating methods for replicating patterned metal films from a template substrate, which can be utilized in plasmonic devices and metamaterials. The advantage of this method is that the template substrate is reusable and can produce multiple copies of the structure. Additionally, the patterned metal films created through this process can replicate the surface characteristics of the template substrate, both in the patterned and unpatterned regions.

Career Highlights

Nathan Charles Lindquist is affiliated with the University of Minnesota, where he continues to advance his research in the field of plasmonics. His innovative approaches have garnered attention and recognition within the scientific community.

Collaborations

Throughout his career, Nathan has collaborated with esteemed colleagues, including David J Norris and Sang Eon Han. These partnerships have contributed to the development of his groundbreaking inventions.

Conclusion

Nathan Charles Lindquist is a prominent figure in the realm of plasmonics and metamaterials, with a focus on innovative replication methods for thin-film structures. His contributions to the field are significant and continue to influence advancements in material science.

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