Researchers have developed what amounts to a programmable platform for quantum chirality that could provide new approaches to explore interacting electrons in chiral systems. (Nanowerk News) A new ...
Scientists experimentally confirm electron vortices in momentum space, a quantum phenomenon that could enable efficient, low-energy quantum technologies. (Nanowerk News) A breakthrough that’s turning ...
A team of researchers from Würzburg has for the first time experimentally demonstrated a quantum tornado. Electrons form vortices in the momentum space of the quantum semi-metal tantalum arsenide.
Scientists from the Massachusetts Institute of Technology (MIT) in the U.S. have made a groundbreaking achievement after they captured the first images of individual atoms freely interacting in space.
WEST LAFAYETTE, Ind. — Matter gets weird at the quantum scale, and among the oddities is the Efimov effect, a state in which the attractive forces between three or more atoms bind them together, even ...
Nobel Committee member Göran Johansson explains elements of quantum mechanics during a press conference to announce the winners of the 2025 Nobel Prize in Physics on October 7 in Stockholm. Christine ...
A new study probing quantum phenomena in neurons as they transmit messages in the brain could provide fresh insight into how our brains function. Our brains process information via a vast network ...
The Dynamical Casimir Effect (DCE) encompasses a striking quantum phenomenon whereby rapid, nonadiabatic modifications of boundary conditions produce pairs of real photons from the quantum vacuum – a ...
Controlling light is an important technological challenge—not just at the large scale of optics in microscopes and telescopes ...
At first glance, quantum mechanics might seem strange or even impossible. That’s because our everyday experiences of the laws of physics are very different from how matter and energy behave at the ...
Long considered a serious technical challenge, superradiance could actually help quantum devices go even further.