News Feed
9445 quantum news items from across the web.
Demonstrating Toric Code outperforming monolithic qubits at a low error rate is a significant scientific breakthrough with practical implications for fault-tolerant quantum computing.
Research into the fundamental principles of quantum error correction, concerning information within qubits, is an important theoretical paper for the field.
Computing a complex polynomial on a commercial quantum computer like Quantinuum’s H2-2 with error mitigation is a notable step in demonstrating practical utility and hardware capabilities.
This is a retrospective market analysis predicting a past stock drop for a quantum computing entity, relevant for market sentiment but not a direct industry development.
Benchmarking major quantum software frameworks like PennyLane, Qiskit, and Cirq is notable for developers and for evaluating platform performance.
Research suggesting distributed quantum computing can enable scalable and resilient systems addresses a fundamental challenge and is an important theoretical advance for the field.
Demonstrating a digital Fermionic Laughlin state with trapped ions is an important scientific achievement, pushing the boundaries of quantum simulation capabilities.
Research showing Majorana modes' resilience to disorder is a significant scientific breakthrough, directly supporting the development of more stable topological qubits.
Xanadu setting a new industry benchmark in photonic chip packaging is a notable hardware development that enhances the performance and scalability of their quantum modality.
Alice & Bob's work on Cat Qubits and establishing criteria for logical qubit evaluation is a significant development, proposing an efficient path to error correction.
This is a speculative article about the long-term impact of quantum computing on cryptography and financial systems, rather than a direct industry development.