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Researcher
- Adam M Guss
- Joseph Chapman
- Nicholas Peters
- Andrzej Nycz
- Blane Fillingim
- Brian Post
- Hsuan-Hao Lu
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- Josh Michener
- Kuntal De
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- Thomas Feldhausen
- Udaya C Kalluri
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- Yousub Lee
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- Anees Alnajjar
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- Liangyu Qian
- Mariam Kiran
- Md Inzamam Ul Haque
- Olga S Ovchinnikova
- Paul Abraham
- Radu Custelcean
- Ramanan Sankaran
- Serena Chen
- Vilmos Kertesz
- Vimal Ramanuj
- Vincent Paquit
- Wenjun Ge
- Yang Liu

Here we present a solution for practically demonstrating path-aware routing and visualizing a self-driving network.

Technologies directed to polarization agnostic continuous variable quantum key distribution are described.
Contact:
To learn more about this technology, email partnerships@ornl.gov or call 865-574-1051.

By engineering the Serine Integrase Assisted Genome Engineering (SAGE) genetic toolkit in an industrial strain of Aspergillus niger, we have established its proof of principle for applicability in Eukaryotes.

The development of quantum networking requires architectures capable of dynamically reconfigurable entanglement distribution to meet diverse user needs and ensure tolerance against transmission disruptions.

Polarization drift in quantum networks is a major issue. Fiber transforms a transmitted signal’s polarization differently depending on its environment.

Among the methods for point source carbon capture, the absorption of CO2 using aqueous amines (namely MEA) from the post-combustion gas stream is currently considered the most promising.

This invention addresses a key challenge in quantum communication networks by developing a controlled-NOT (CNOT) gate that operates between two degrees of freedom (DoFs) within a single photon: polarization and frequency.

We present a comprehensive muti-technique approach for systematic investigation of enzymes generated by wastewater Comamonas species with hitherto unknown functionality to wards the depolymerization of plastics into bioaccessible products for bacterial metabolism.

Polarization drift in quantum networks is a major issue. Fiber transforms a transmitted signal’s polarization differently depending on its environment.

We present the design, assembly and demonstration of functionality for a new custom integrated robotics-based automated soil sampling technology as part of a larger vision for future edge computing- and AI- enabled bioenergy field monitoring and management technologies called