Forbes contributors publish independent expert analyses and insights. Paul-Smith Goodson is an analyst covering quantum computing and AI. IBM’s 300mm quantum processor wafer features multiple chips ...
Since the 1990s, evidence has been growing that quantum computers should be able to solve a range of particularly complex computational problems, with applications in everything from supply chain ...
On May 7, 1981, influential physicist Richard Feynman gave a keynote speech at Caltech. Feynman opened his talk by politely rejecting the very notion of a keynote speech, instead saying that he had ...
Quantum computing uses quantum mechanics—the physics governing particles at atomic and subatomic scales—to process information in totally different ways from today’s digital computers. Instead of ...
From where we're sitting today, it's increasingly likely that quantum computing will be one of the most disruptive technologies on the medium-term horizon. Here’s why: Harnessing the properties of ...
Superconducting quantum computing (SQC) uses supercooled circuits, offering high speeds, but is fragile. AI aids SQC's development by solving system design issues and detecting anomalies. Investors ...
Trapped-ion quantum computing operates at room temperature, unlike other types that need extreme cold. This type of quantum computing is promising for stable, long-term research and application.
Collaboration will explore how fault-tolerant quantum computing could advance complex fluid dynamics simulations, including for uses in gas turbine designProject aims to combine Quantinuum's Helios ...