News Feed
1034 quantum news items from across the web.
Important research on an adaptive decoding framework for surface codes represents a notable step forward in quantum error correction, crucial for fault tolerance.
Generating logical genuine multipartite entanglement is a major scientific breakthrough, crucial for developing universal quantum computation.
This is a general commentary piece on the quantum computing landscape, offering background noise rather than specific new developments.
Research on a unified framework for estimating logical error rates is notable, providing important tools for assessing quantum system performance and error correction progress.
Research on radiation rates affecting qubit measurements is relevant for improving hardware stability and coherence by addressing environmental factors.
A new programming language enforcing causality in quantum programs is a notable development that could improve the reliability and development of quantum software.
This details an incremental advancement in producing a specialized material (Helium-3) relevant for some superconducting quantum computing systems, but not a direct quantum computing breakthrough.
The discussion of post-quantum security for Bitcoin is relevant as it drives the development and adoption of quantum-resistant cryptographic algorithms.
This details an incremental advancement in producing a specialized material (Helium-3) relevant for some superconducting quantum computing systems, but not a direct quantum computing breakthrough.
The discussion of post-quantum security for Bitcoin is relevant as it drives the development and adoption of quantum-resistant cryptographic algorithms.
Research into a quantum heat engine with potential for revolutionary improvements in quantum computing cooling or efficiency is a notable scientific development.
Google Quantum AI's application of AI to quantum error correction is a major scientific development with significant practical implications for building fault-tolerant quantum computers.
This article details scientific research applying quantum sampling to peptide space, representing an incremental advancement in quantum algorithm applications.
A "million-fold speedup" in qubit error-mitigation represents a significant scientific breakthrough with major practical implications for the viability and performance of quantum computers.
This is a general forum discussion about quantum computing's future, without specific news on funding, technology, or company developments.
This is a historical interview with two prominent scientists, providing background rather than current, investment-relevant news or breakthroughs.
This is a highly speculative article about future intelligence research, with quantum computing being only a tangential mention in a broad, non-specific context.
This reports on a market forecast for a material used in quantum computing, which is relevant background but not a direct breakthrough or major company news.
The development of the world's first superconducting quantum heat engine is a notable scientific breakthrough with potential long-term implications for quantum computing hardware.
It's an incremental research step by a national lab exploring new material integration for superconducting quantum circuits.