Live Breaking News & Updates on Jena xing lab

Stay updated with breaking news from Jena xing lab. Get real-time updates on events, politics, business, and more. Visit us for reliable news and exclusive interviews.

Researchers create 'beautiful marriage' of quantum enemies

Researchers create 'beautiful marriage' of quantum enemies
eurekalert.org - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from eurekalert.org Daily Mail and Mail on Sunday newspapers.

Williaml-quackenbush , David-muller , Phillip-dang , Samuelb-eckert , Debdeep-jena , Davide-burr , Us-naval-research-laboratory , School-of-electrical , Office-of-naval-research , National-science-foundation , National-high-magnetic-field-laboratory , Jena-xing-lab

Researchers create 'beautiful marriage' of quantum enemies


Date Time
Researchers create ‘beautiful marriage’ of quantum enemies
Cornell scientists have identified a new contender when it comes to quantum materials for computing and low-temperature electronics.
Using nitride-based materials, the researchers created a material structure that simultaneously exhibits superconductivity – in which electrical resistance vanishes completely – and the quantum Hall effect, which produces resistance with extreme precision when a magnetic field is applied.
“This is a beautiful marriage of the two things we know, at the microscale, that give electrons the most startling quantum properties,” said Debdeep Jena, the David E. Burr Professor of Engineering in the School of Electrical and Computer Engineering and Department of Materials Science and Engineering. Jena led the research, published Feb. 19 in Science Advances, with doctoral student Phillip Dang and research associate Guru Khalsa, the paper’s senior authors.

Williaml-quackenbush , David-muller , Phillip-dang , Samuelb-eckert , Debdeep-jena , Syl-kacapyr , Davide-burr , Us-naval-research-laboratory , School-of-electrical , Office-of-naval-research , College-of-engineering , National-science-foundation