Adding extra dimensions to a theory known as “fuzzy gravity” may help bridge the gap between quantum mechanics and relativity.

Adding extra dimensions to a theory known as “fuzzy gravity” may help bridge the gap between quantum mechanics and relativity.
A state-of-the-art printer with nanometer-scale precision enables the production of quantum emitters, advancing secure quantum communication.
Machine learning unveils the ideal structure of a quantum memristor, which could one day surpass current computing systems.
In theory, quantum communications should be impossible to hack, but study shows this may not be true in practice.
Even tiny deviations in pendulum behavior caused by quantum gravity could be clearly noticeable, say researchers.
Gaining an understanding of quantum gravity could help scientists uncover some of the Universe’s deepest mysteries.
A radical superconducting qubit design promises to extend their runtime by addressing decoherence challenges in quantum computing.
Upcoming space experiment sets sights on encrypted quantum communication, which could also provide valuable insights into quantum gravity.
Physicists working on LIGO have surpassed the quantum limit to enhance gravitational wave detectors and revolutionize astrophysical observations.
Machine learning unravels the secrets of the Gaudin model, paving the way for improved quantum technologies and a deeper understanding of quantum behavior.