NVIDIA has launched CUDA-Q Logical, an extension to its open-source accelerated quantum computing platform, aimed at accelerating fault-tolerant quantum computing by unifying the design of high-level algorithms, quantum error correction codes, and QPU micro-architectures. This framework, detailed
NVIDIA has launched CUDA-Q Logical, an extension to its open-source accelerated quantum computing platform, aimed at accelerating fault-tolerant quantum computing by unifying the design of high-level algorithms, quantum error correction codes, and QPU micro-architectures. This framework, detailed in a new research publication, allows for direct derivation of full-stack resource estimates and has shown significant speedups in fault-tolerant system resource modeling at national laboratories like Fermilab. The release coincides with wide adoption of NVIDIA’s NVQLink interconnect and GPU-accelerated quantum simulation libraries, fostering an auditable foundation for utility-scale quantum-GPU supercomputers. The post NVIDIA Unveils CUDA-Q Logical to Accelerate Fault-Tolerant System Orchestration Across Hardware Modalities appeared first on Quantum Computing Report .