Physicists working at ultra-low temperatures have stumbled onto a quantum phase that should not exist according to the usual ...
When quantum spins interact, they can produce collective behaviors that defy long-standing expectations. Researchers have now ...
Quantum materials can behave in surprising ways when many tiny spins act together, producing effects that don’t exist in ...
Collective behavior is an unusual phenomenon in condensed-matter physics. When quantum spins interact together as a system, ...
A new framework for understanding the nonmonotonic temperature dependence and sign reversal of the chirality-related ...
Scientists have uncovered a previously unthinkable state of matter that challenges decades of assumptions ...
A quantum state of matter has appeared in a material where physicists thought it would be impossible, forcing a rethink on the conditions that govern the behaviors of electrons in certain materials.
Scientists are leveraging quantum physics to develop new energy production methods, aiming to address the computing industry's growing energy demands. Researchers at MIT have devised a novel approach ...
Electrons are usually described as particles, but in a rare quantum material, that picture completely breaks down ...
A new framework for understanding the non-monotonic temperature dependence and sign reversal of the chirality-related ...