QuEra targets Libra, the first fault-tolerant quantum computer, in 2028 on Amazon Braket. Neutral atom qubits scaling to 10,000+ with AI-optimized laser calibration and NVIDIA-enhanced error correction enabling practical quantum utility.

QuEra targets Libra, the first fault-tolerant quantum computer, in 2028 on Amazon Braket. Neutral atom qubits scaling to 10,000+ with AI-optimized laser calibration and NVIDIA-enhanced error correction enabling practical quantum utility.
QuEra and HPE establish integrated framework for deploying fault-tolerant neutral-atom QPUs on-premises with HPC systems, enabling sovereign data workloads and low-latency quantum-classical computing at enterprise scale.
Researchers at TU Munich demonstrate that preserving logical program structure (loops, conditionals) during quantum compilation dramatically reduces complexity and enables scalable compilation, addressing critical bottlenecks for future quantum algorithms.
FlowRouter achieves 2.3× spacetime volume reduction for fault-tolerant quantum compilation by jointly optimizing Clifford routing and magic state cultivation within a single 3D embedding, advancing practical quantum error correction.
Researchers develop three-layer quantum compiler architecture for fault-tolerant systems, moving beyond circuit optimization to encoding-aware compilation. Demonstrated effectiveness on thousand-qubit superconducting processors.
Department of Energy announced a $215M milestone-based competition requiring domestic quantum companies to deploy fault-tolerant systems with 100+ logical qubits by 2028, with independent national lab verification and modality-neutral scoring.
DOE announces $215M Quantum Genesis Q Competition to fund development of fault-tolerant quantum computers with 100+ logical qubits, advancing toward scientifically relevant quantum systems.
Researchers developed new algebraic tools for designing CSS-T quantum error correction codes using cyclotomic sets, enabling construction of longer codes with improved error mitigation capabilities critical for fault-tolerant quantum computation.
Researchers demonstrate fault-tolerant QAOA for Max-Cut using [[4,2,2]] error detection code. Novel inter-block logical RZZ gates enable multi-block quantum circuits with improved output quality through post-selection on stabilizer measurements.