Quantum simulator could help uncover materials for high-performance electronics
Peer-Reviewed Publication
Updates every hour. Last Updated: 25-Apr-2025 01:08 ET (25-Apr-2025 05:08 GMT/UTC)
MIT researchers created a synthetic magnetic field using a superconducting quantum processor, which could enable them to precisely study complex phenomena in materials, like phase changes. This could shed light on properties of unique materials that may be used to create faster or more powerful electronics.
In a recent paper in Nature Physics, an international research collaboration used world-class instrumentation at the Facility for Rare Isotope Beams (FRIB) to study the exotic nuclide, or rare isotope, chromium-62. Researchers used a gamma-ray spectroscopy experiment in tandem with theoretical models to identify an unexpected variety of shapes in chromium-62. The finding provides more insight into so-called “islands of inversion,” or regions in the nuclear chart where certain nuclides diverge from traditional viewpoints based on the properties of stable nuclei.
The U.S. Department of Energy (DOE) recently granted the Atlantic Marine Energy Center (AMEC) $12 million to expand research and development in marine energy initiatives. AMEC comprises four universities including the University of New Hampshire, Stony Brook University, the Coastal Studies Institute, and Lehigh University.