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Researcher
- Rama K Vasudevan
- Rafal Wojda
- Sergei V Kalinin
- Yongtao Liu
- Joseph Chapman
- Kevin M Roccapriore
- Kyle Kelley
- Maxim A Ziatdinov
- Nicholas Peters
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- Hsuan-Hao Lu
- Joseph Lukens
- Kashif Nawaz
- Muneer Alshowkan
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- An-Ping Li
- Andrew Lupini
- Anees Alnajjar
- Anton Ievlev
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- Bogdan Dryzhakov
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- Costas Tsouris
- Debangshu Mukherjee
- Gerd Duscher
- Gs Jung
- Gyoung Gug Jang
- Hoyeon Jeon
- Huixin (anna) Jiang
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- Ivan Vlassiouk
- Jamieson Brechtl
- Jewook Park
- Jong K Keum
- Kai Li
- Kyle Gluesenkamp
- Liam Collins
- Mahshid Ahmadi-Kalinina
- Marcio Magri Kimpara
- Mariam Kiran
- Marti Checa Nualart
- Md Inzamam Ul Haque
- Mina Yoon
- Mostak Mohammad
- Neus Domingo Marimon
- Nickolay Lavrik
- Omer Onar
- Ondrej Dyck
- Praveen Kumar
- Radu Custelcean
- Saban Hus
- Sai Mani Prudhvi Valleti
- Shajjad Chowdhury
- Steven Randolph
- Subho Mukherjee
- Suman Debnath
- Sumner Harris
- Utkarsh Pratiush
- Zhiming Gao

Dual-GP addresses limitations in traditional GPBO-driven autonomous experimentation by incorporating an additional surrogate observer and allowing human oversight, this technique improves optimization efficiency via data quality assessment and adaptability to unanticipated exp

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.

Misalignment issues of the PWPT system have been addressed. The intercell power transformer has been introduced in order to improve load sharing of the system during a mismatch of the primary single-phase coil and the secondary multi-phase coils.

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.

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.

The invention introduces a novel, customizable method to create, manipulate, and erase polar topological structures in ferroelectric materials using atomic force microscopy.

High coercive fields prevalent in wurtzite ferroelectrics present a significant challenge, as they hinder efficient polarization switching, which is essential for microelectronic applications.