Fresnes, France

Julienne Liang


Average Co-Inventor Count = 4.4

ph-index = 2

Forward Citations = 27(Granted Patents)


Company Filing History:


Years Active: 1994-1996

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2 patents (USPTO):Explore Patents

Title: Innovator Spotlight: Julienne Liang from Fresnes, France

Introduction

Julienne Liang is a recognized inventor based in Fresnes, France, known for her contributions in the field of polymer materials and optics. With two patents to her name, she has made significant strides in developing technologies that enhance optical systems.

Latest Patents

Julienne's most recent patents showcase her innovative spirit and technical expertise. The first patent is a **crosslinkable polymer material which may be used in non-linear optics**. This invention relates to a crosslinkable material that is active in non-linear optics, comprising a polymer carrying chromophores each included in a specific polymer unit. The detailed formulation allows for advanced applications in optical technologies.

The second patent focuses on a **method for manufacturing strip optical waveguides**. This method involves creating a planar optical waveguide using polymer materials, where an active polymer is strategically deposited on a semiconductor substrate. The layers of buffer polymers are carefully selected to maintain a specific refractive index difference, optimizing the waveguide's performance.

Career Highlights

Julienne Liang has been making waves in the technological realm as a member of France Telecom. Her work at this esteemed company allows her to hone her skills and apply her inventive talents in practical settings. Her dedication to advancing polymer applications in optics is evident in her patented inventions.

Collaborations

During her career, Julienne has collaborated with esteemed professionals like Regine Levenson and Alain Carenco. Working alongside such talented colleagues has undoubtedly bolstered her creative process and led to successful innovations in her field.

Conclusion

Julienne Liang’s inventive contributions are noteworthy in the domains of polymer technology and optics. With a strong foundation in research and collaboration, her work continues to inspire advancements in optical materials and manufacturing methods. The impact of her patents will likely resonate within the industry for years to come.

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