Physicists from ISTA have, for the first time, implemented an autonomous method for distributing quantum entanglement using a "quantum bath." This breakthrough could lay the foundation for scalable quantum computers and networks. The new approach enables a continuous connection between distant qubits without the need for active control, opening up new possibilities for the advancement of quantum technologies.
Scientists from the University of California have, for the first time, created two-dimensional arrays of quantum defects in synthetic diamond. This breakthrough opens up new possibilities for developing highly sensitive quantum sensors. Such an approach could significantly improve the accuracy of measurements in biology and materials science.
UNSW engineers have achieved a breakthrough in quantum computing by enabling isolated atomic nuclei to interact at the scale of modern microchips. This paves the way for building scalable quantum computers using existing technologies.