A new trick for modeling molecules with quantum accuracy takes a step toward revealing the equation at the center of a popular simulation approach, which is used in fundamental chemistry and materials ...
New research using neural networks, a form of brain-inspired AI, proposes a solution to the tough challenge of modeling the states of molecules. The research shows how the technique can help solve ...
A quantum computer and conventional supercomputer that work together could become an invaluable tool for understanding chemicals. A collaboration between IBM and the Japanese scientific institute ...
The company has drawn governments, a major chipmaker, and the Pentagon into an effort to control fragile photons and build a ...
Computing hasn’t changed fundamentally since the advent of the abacus 4,500 years ago. But that could change imminently as the world ushers in the quantum computer, a radically new type of computing ...
This voice experience is generated by AI. Learn more. This voice experience is generated by AI. Learn more. Isosurface of the Dyson orbital, taken from Piccinelli, Samuele, et al., “Exploring pathways ...
The world’s most powerful supercomputer has raised the bar for calculating the number of atoms in a molecular dynamics simulation 1,000 times greater in size and speed than any previous simulation of ...
Conducted through Hatch’s Dimension X open innovation challenge for the Singapore Home Team, the project used Classiq’s quantum software platform, AWS infrastructure for classical high-performance ...
IBM and ORNL use quantum fusion materials modelling to probe FLiBe molten salts, a possible route to better tritium recovery.
A recent collaboration between Classiq and Hatch in Singapore has advanced the field of cloud-based quantum-classical computational chemistry by executing a proof-of-concept project through Amazon Web ...