Scientists have developed a new type of architecture for quantum computing chips, and it could pave the way for machines ...
Electrons moving across the surface of a topological insulator do more than carry electric charge. Their quantum states also ...
Physicists at the University of Oldenburg have generated fully three-dimensional light fields from two intersecting ...
Physicists have unveiled a new quantum state, a realm where electrons behave in a way previously unseen. This breakthrough, announced on November 17, 2025, marks a significant stride in the ...
Indu Satija celebrates the 50th anniversary of the publication of Douglas Hofstadter’s eponymous, iconic butterfly and explains its enduring, magnetic appeal Each new realization adds another chapter ...
A new platform for engineering chiral electron pathways offers potential fresh insights into a quantum phenomenon discovered by chemists—and exemplifies how the second quantum revolution is fostering ...
Scientists at the University of Chicago have uncovered a surprising quantum state in the layered magnetic material Fe5GeTe2, where huge numbers of electrons move together unusually slowly while ...
Scientists in Japan have uncovered a strange new behavior in “heavy” electrons — particles that act as if they carry far more mass than usual. These electrons were found to be entangled, sharing a ...
Most magnets have two poles: north and south, or positive and negative, in a familiar arrangement called a "dipole." But ...
Traditional computational approaches make the problem manageable by stripping away much of that real-material complexity.
Selected among only 21 scientists nationwide, Li will be exploring quantum phenomena in atomically thin materials.
An international team of researchers witnessed a strange phenomenon of quantum physics in Z bosons, massive particles that vanish almost as soon as they appear.