Evandale, Australia

Benjamin Ung


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: The Innovative Mind of Benjamin Ung: A Pioneer in Light Modulation

Introduction: Benjamin Ung, a talented inventor based in Evandale, Australia, has made significant contributions to the field of optical technology. His innovative patent focuses on a novel light modulation technique utilizing total internal reflection and a tunable conductive layer. This advancement holds potential for various applications, particularly in terahertz radiation.

Latest Patents: Benjamin Ung holds a patent titled "Light modulator using total internal reflection at an interface with a tunable conductive layer." This invention describes a light modulator that employs a prism to facilitate total internal reflection (TIR). By integrating a tunable conductive layer on the TIR surface, the conductivity of this layer can be dynamically controlled through voltage application or optical pumping. This feature allows for selective absorption and attenuation of the reflected light beam depending on the electrical conductivity of the layer, which may also lead to phase alterations of the reflected light.

Career Highlights: Currently, Benjamin is affiliated with The Chinese University of Hong Kong, where he engages in research focused on advancing optical modulation technologies. His innovative work contributes to expanding the knowledge base and practical applications in the field of optics.

Collaborations: In his research endeavors, Benjamin collaborates with talented coworkers, such as Xudong Liu and Zefeng Chen. Together, they are pushing boundaries in the domain of light modulation and exploring new technological frontiers.

Conclusion: Benjamin Ung exemplifies the spirit of innovation through his patent and collaborative efforts at The Chinese University of Hong Kong. His work on light modulators using total internal reflection positions him as a key player in the advancement of optical technologies, promising exciting possibilities for future research and applications.

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