This inventor holds 1 USPTO granted patent. Top assignee: University of Illinois. Active years: 2021.
Company Filing History:
Years Active: 2021
Title: Jeewon Suh: Innovator in Electro-Opto-Mechanics
Introduction
Jeewon Suh is a prominent inventor based in Savoy, Illinois. She has made significant contributions to the field of electro-opto-mechanics, particularly in the area of real-time sensing of flowing nanoparticles. Her innovative work has led to the development of a unique system that combines optical and mechanical modes for enhanced sensing capabilities.
Latest Patents
Jeewon Suh holds a patent for a groundbreaking invention titled "Real-time sensing of flowing nanoparticles with electro-opto-mechanics." This patent describes a system and method that includes a resonator device with walls forming a channel. The walls are designed to simultaneously confine light in an optical mode and vibration in a mechanical mode. The mechanical mode is specifically selected to allow vibration to couple with the optical mode. A waveguide is integrated with the resonator device to guide probe light through it. Additionally, an electro-mechanical actuation mechanism provides a mechanical drive force to the resonator device. A photodetector measures the light outputted by the waveguide after it passes through the resonator device, capturing a modulated version of the probe light based on its interaction with a fluid or particles contained within the channel.
Career Highlights
Jeewon Suh is affiliated with the University of Illinois, where she continues to advance her research and innovation in the field. Her work has garnered attention for its potential applications in various industries, particularly in sensing technologies.
Collaborations
Jeewon collaborates with Gaurav Bahl, who is also involved in research related to electro-opto-mechanics. Their partnership enhances the scope and impact of their innovative projects.
Conclusion
Jeewon Suh is a trailblazer in the realm of electro-opto-mechanics, with her patent showcasing her innovative approach to real-time sensing. Her contributions to the University of Illinois and her collaboration with fellow researchers further solidify her position as a leading inventor in her field.
