Back to News
quantum-computing
World's first 'zinc oxide spin qubit' could advance scalable quantum devices
Phys.org Quantum Section
Loading...
1 min read
0 likes
⚡ Quantum Brief
A research team led by SKKU professor Hosung Seo of the Department of Quantum Information Engineering and the SKKU Advanced Institute of Nanotechnology, working with the University of Wisconsin–Madison and the University of Washington, has identified—for the first time—an atomic defect structure in the zinc oxide (ZnO) semiconductor with outstanding properties for use as a "spin qubit," a core building block of future quantum computers, quantum communications and quantum sensors.
AI Audio Summary
0:00 / 0:00
Click to play
Quantum News · Media Library
Understand this faster with AI
A research team led by SKKU professor Hosung Seo of the Department of Quantum Information Engineering and the SKKU Advanced Institute of Nanotechnology, working with the University of Wisconsin–Madison and the University of Washington, has identified—for the first time—an atomic defect structure in the zinc oxide (ZnO) semiconductor with outstanding properties for use as a "spin qubit," a core building block of future quantum computers, quantum communications and quantum sensors.
Tags
quantum-sensing
quantum-computing
quantum-hardware
quantum-communication
Source Information
Source: Phys.org Quantum Section
Discussion
0 professional contributions
Sign in to join this professional discussion.
Be the first to add a constructive contribution.
