At TU Wien, researchers have discovered a state in a quantum material that had previously been considered impossible. The ...
Physicists have revealed a quantum state once thought impossible, where topology emerges even without particle-like electrons ...
Physicists working at ultra-low temperatures have stumbled onto a quantum phase that should not exist according to the usual ...
Building large-scale quantum technologies requires reliable ways to connect individual quantum bits (qubits) without ...
The quantum anomalous Hall effect (QAHE) is one of the most important phenomena in condensed matter physics, holding significant promise in low-energy-dissipation electronics that could possibly ...
The non-chiral kagome lattice (corner-sharing triangles) basis of the topological material KV3Sb5 is found to develop subtle electronic chirality near the surface which shows distinct electromagnetic ...
Using ultracold atoms and laser light, researchers recreated the behavior of a Josephson junction—an essential component of quantum computers and voltage standards. The appearance of Shapiro steps in ...
The Quantum Anomalous Hall Effect (QAHE) represents a groundbreaking phenomenon in condensed matter physics, where a material exhibits a quantised Hall conductance in the absence of an external ...