Adding extra dimensions to a theory known as “fuzzy gravity” may help bridge the gap between quantum mechanics and relativity.
Adding extra dimensions to a theory known as “fuzzy gravity” may help bridge the gap between quantum mechanics and relativity.
New insights into the decay of a hadron particle known as a charmonium could potentially reshape our understanding of particle interactions and challenge existing theories.
Future astronauts may be protected from galactic cosmic rays thanks to a novel organ-on-chip system containing interconnected human tissue.
Future 6G wireless networks will rely on quantum computers, but developing the technology and making it sustainable is complex.
ESA greenlights LISA, a space-based observatory poised to detect gravitational waves across space and time.
Scientists have been unable to observe phasons with mass, but a team of physicists have finally managed it.
Emergence of classicality states that a quantum description of a large object must be the same as its classical description, but this isn’t always so…
Comparing algorithms used to model spinning neutron stars, scientists hope to better understand the physics of the elementary particles that make them up.
Scientists put chiral perturbation theory to the test with a set of new experiments that have helped define fundamental properties of protons.
Quantum gravity seeks to describe gravity according to the principles of quantum mechanics, but can it be done?