Google, Quantum computing
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Google claims its latest quantum algorithm can outperform supercomputers on a real-world task
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 most powerful classical supercomputers.
Google's Willow quantum chip stuns scientists with 13,000× speed boost over top supercomputers in physics simulation.
Google's new Quantum Echoes algorithm performed a complex physics task 13,000 times faster than the world's fastest supercomputer.
John Clarke of UC Berkeley and Michel H. Devoret and John M. Martinis of UC Santa Barbara won the Nobel Prize in physics for their experiments in the 1980s.
As quantum computing is attracting unprecedented investment, with $3 billion flowing into the sector in just the first half of September through major venture deals and public markets, critical infrastructure challenges remain and threaten to undermine the technology's ambitious scaling goals.
Waveguide-style approach promises to pair the versatility of phononic quantum technologies with the tight control of photonic ones
Quantum Computing Nobel Prize honors John Clarke, Michel Devoret, and John Martinis for their pioneering work in macroscopic quantum phenomena, demonstrating how quantum mechanics extends beyond the m