Scientists at the Institute of Science Tokyo have announced a breakthrough in quantum error correction that could bring a large-scale quantum computer closer to ...
Quantum X Labs says its AI-driven decoder, trained only on synthetic data, outperformed Google's PyMatching benchmarks on ...
Written for you by our author Tejasri Gururaj, edited by Gaby Clark, and fact-checked and reviewed by Robert Egan —this article is the result of careful human work. We rely on readers like you to keep ...
QXL’s updated AI-driven decoder demonstrated improved performance supporting the Company’s roadmap toward reliable fault-tolerant quantum ...
To overcome this problem, high-rate quantum codes, such as quantum low-density parity-check codes, have been considered. With this approach, the logical gates, which make calculations possible, have ...
New research introduces a family of error-correcting codes that reduce qubit overhead by up to 1,000 times compared to today’s leading approach — without requiring any new hardware. IQM Quantum ...
Researchers in the United States are set to start designing practical and self-correcting quantum ...
D-Wave's massive January acquisition of Quantum Circuits is paying off: way better error correction, making quantum computing ...
RIKEN scientists tap into AI to find a smarter method for fixing quantum errors, cutting resource demands for stable quantum machines. Theoretical physicists at RIKEN have made a key advance in ...
Various methods are used to correct errors in quantum computers. Not all operations can be implemented equally well with different correction codes. Therefore, a research team has developed a method ...
A team of physicists has demonstrated an 18-qubit quantum processor built on silicon that manages its own operation from ...