Researchers at UCLA and UC Riverside have developed a novel computing system that harnesses quantum oscillators to solve complex optimization problems at room temperature, marking a departure from traditional quantum computing approaches that require extreme cooling. The breakthrough, published this week in Physical Review Applied, demonstrates how specially engineered materials can naturally evolve toward optimal solutions for problems spanning telecommunications, scheduling, and logistics.
The system represents a new class of "Ising machines" that exploit the physical properties of tantalum sulfide, a charge-density-wave material, to perform computations through quantum mechanical processes rather than digital algorithms. Unlike conventional quantum computers that operate near absolute zero, this architecture functions at ambient temperatures while maintaining quantum coherence.
No chance. If the Twitter/Mastodon debacle taught us anything it's that federated networks have a long way to go before they can achieve anything close to mass adoption.
There's one guy who spends a ridiculously large amount of time posting nothing but pro Russian and Chinese propaganda on various communities and I've seen people turned off to Lemmy just because of him.
The system represents a new class of "Ising machines" that exploit the physical properties of tantalum sulfide, a charge-density-wave material, to perform computations through quantum mechanical processes rather than digital algorithms. Unlike conventional quantum computers that operate near absolute zero, this architecture functions at ambient temperatures while maintaining quantum coherence.