Quantum computers—devices that process information using quantum mechanical effects—have long been expected to outperform classical systems on certain tasks. Over the past few decades, researchers ...
When a quantum computer processes data, it must translate it into understandable quantum data. Algorithms that carry out this 'quantum compilation' typically optimize one target at a time. However, a ...
Researchers from Google Quantum AI report that their quantum processor, Willow, ran an algorithm for a quantum computer that solved a complex physics problem thousands of times faster than the world's ...
Haiqu's Mykola Maksymenko says agentic AI is compressing months of quantum research into days — and pulling useful work out ...
There are many algorithms for which it has been mathematically proven that a quantum computer can generate results that would take a classical computer an unreasonable amount of time to generate.
The original version of this story appeared in Quanta Magazine. For computer scientists, solving problems is a bit like mountaineering. First they must choose a problem to solve—akin to identifying a ...
Particle collisions are inherently quantum, but much of that character is lost when we turn them into classical data. Sarah Alam Malik explores whether preserving more of it could help us spot signs o ...
Ewin Tang was only 18 when her research challenged a widely held belief about the power of quantum computing. As a University ...
The SEALSQ QVault TPM is on track to be the first shipping TPM 2.0 device on the market to implement in silicon the ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results