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Latest News

Deb DeWitt serves as Georgia Tech’s 2025 Beekeeper in Residence with the Urban Honey Bee Project.

Marketer-turned-beekeeper Deb DeWitt serves as Georgia Tech's Beekeeper in Residence and receives the Georgia Beekeepers Association’s Beekeeper of the Year Award.

Karl Lang

Karl Lang will investigate why some minerals survive radiation damage — a discovery that could transform how we recycle and sustain the critical resources powering modern technology.

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Building on the recognition from last year, Georgia Tech again makes the cut.

1st row, from L to R: Ria Vittal, Malavika Niverth; 2nd row: Meghan Hamrick, Britney Huynh, Andrea Ninh; 3rd row: Larissa Martin, Anja Govednik; 4th row: Alison Bolaños, J’Avani Stinson, Deandra Smith.

Congratulations to the inaugural class of College of Sciences undergraduate student ambassadors!

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Georgia Tech Researchers Among World’s Most Highly Cited in 2025

Alexander Cachine

Cachine was selected for his work in solving modern medical challenges using ancient textile techniques. 

Experts In The News

In an article published by The Conversation, Professor Joseph Montoya, Postdoctoral Fellow Xing Zhou, and their collaborator discuss sargassum blooms and their impact on the Caribbean and Gulf coasts and the coasts of the tropical Atlantic. According to their research, the vast mats of smelly, brown seaweed affecting these areas may have entered a "self-sustaining cycle, effectively feeding their own expansion."

The Conversation July 28, 2026

Researchers in the School of Physics, working with King Fahd University of Petroleum and Minerals, have found that standard methods for identifying chirality in topological phases fail when applied to mixed quantum states. The study reveals that established diagnostics, including bulk-boundary correspondence and the modular commutator, are unreliable in these complex systems. Consequently, the research presents two new measures, based on relative entropy, to accurately diagnose chirality and determine the chiral central charge in decohered topological phases, indicating a need for a new set of tools when investigating mixed-state topology.

Quantum Zeitgeist July 16, 2026