Efficient heat management in solids is key to advancing the next generation of electronics. However, wave-like heat ...
Manchester's quantum researchers are building on the Ferranti Mark I legacy, using ultra-pure silicon and single atoms to move quantum computing closer to real-world impact.
Physicists have discovered a surprisingly simple way to reproduce one of the most fascinating models in modern physics—linked to black holes, quantum chaos and exotic electronic materials—using ...
In recent years, research using artificial intelligence to predict material properties has advanced rapidly. Neural network ...
A quantum problem once described as impossible for classical computers has now been solved using relatively modest hardware.
A quiet transformation is unfolding in the way scientists design the materials that power modern technology. From faster computers to energy-saving electronics, the next generation of breakthroughs ...
Researchers have created quantum control techniques that can make a system appear to run backward in time. By precisely managing quantum measurements, they can reshape the system's arrow of time and ...
Jainendra K. Jain's theory of composite fermions belongs firmly in the second category.Born in rural Rajasthan and now the Erwin W. Müller Professor of Physics at Pennsylvania State University, Jain ...
Physicist Paul Davies’s Quantum 2.0: The past, present and future of quantum physics ends on a beautiful note. “To be aware of the quantum world is to glimpse something of the majesty and elegance of ...
Led by quantum industry pioneers, the startup aims to overcome challenges in qubit yield and component integration using ...
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