The technique opens possibilities for exploring exotic states of matter and building new quantum materials.
https://cua-mit-edu.ezproxyberklee.flo.org/news/physicists-arrange-atoms-in-extremely-close-proximity/
Flux pinning in a YBCO superconductor, liquid nitrogen, and holograms.
https://cua-mit-edu.ezproxyberklee.flo.org/news/cua-spark-2024/
Trapping molecules for use in systems may help make ultra-high-speed experimental technology even faster.
https://cua-mit-edu.ezproxyberklee.flo.org/news/researchers-make-leap-in-quantum-computing/
The CUA is welcoming suggestions for collaborative research with minority-serving institutions.
https://cua-mit-edu.ezproxyberklee.flo.org/news/collaborations-with-minority-serving-institutions/