Chicago, IL, United States of America

Jennifer E Curtis

This inventor holds 9 USPTO granted patents and 2 EPO patents. Top assignee: The University of Chicago. Active years: 2003-2007.


 

Average Co-Inventor Count = 2.9

ph-index = 8

Forward Citations = 86(Granted Patents)


Location History:

  • Chicago, IL (US) (2003 - 2006)
  • Mannheim, DE (2007)
  • Manheim, DE (2007)

Company Filing History:


Years Active: 2003-2007

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9 patents (USPTO):Explore Patents

Title: Innovations of Jennifer E. Curtis

Introduction

Jennifer E. Curtis is a prominent inventor based in Chicago, IL (US). She has made significant contributions to the field of optical technology, holding a total of 9 patents. Her work focuses on the manipulation of light and its applications in various scientific and industrial fields.

Latest Patents

Among her latest patents are the "Transverse Optical Accelerator" and "Generalized Optical Vortices." These innovations describe methods and systems for generating modulated optical vortices. Optical vortices can be utilized for a variety of applications, such as applying controlled torque or force patterns to objects ranging from a few nanometers to hundreds of micrometers in size. Numerous optical modes of these vortices can be created to meet virtually any desired need in object manipulation. Furthermore, her work allows for the modification of the wavefront of a beam of light in specific ways to create new types of optical traps. These traps are useful for manipulating mesoscopic materials. When the modified beam is focused, the resulting optical trap exerts forces transverse to the optical axis, which can transport mesoscopic matter such as nanoclusters, colloidal particles, and biological cells.

Another significant patent involves the use of multiple optical vortices for pumping, mixing, and sorting. This method creates large numbers of high-quality optical traps in arbitrary three-dimensional configurations and allows for dynamic reconfiguration under computer control. It employs computer-generated diffractive optical elements to convert one or more optical tweezers into multiple optical vortices. This technique combines the optical vortex method with holographic optical tweezers to create multiple optical vortices in various configurations. The rotation induced in trapped particles by these vortices can be used to assemble clusters of particles into functional micromachines, drive previously assembled micromachines, and perform various manipulations and transformations on matter over length scales.

Career Highlights

Jennifer E. Curtis is affiliated with The University of Chicago, where she continues to advance her research in optical technologies. Her innovative work has garnered attention in both academic and industrial circles.

Collaborations

She has collaborated with notable colleagues, including David G. Grier and Brian A. Koss, contributing to the advancement of her research and the development of new technologies.

Conclusion

Jennifer E. Curtis is a leading figure in the field of optical technology, with a

Profile summary based on public USPTO records.
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