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Open-Source Platform Simplifies Quantum Computing

A new orchestration layer helps researchers model, verify, and optimise quantum systems built around logical qubits.

Open Source For You

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Sep 16, 2026 at 6:45 AM UTC · 2 分で読める

Open-Source Platform Simplifies Quantum Computing
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A new orchestration layer helps researchers model, verify, and optimise quantum systems built around logical qubits.

NVIDIA has expanded its open-source CUDA-Q platform with CUDA-Q Logical, an orchestration layer for developing and evaluating applications designed for fault-tolerant quantum computers. The addition provides researchers with a programmable workflow for coordinating quantum algorithms, error-correction methods, hardware architectures, and other system components.

Fault-tolerant quantum computing relies on logical qubits to reduce the impact of errors occurring in physical qubits. However, designing such systems requires multiple layers of hardware and software to be evaluated together. A change in the algorithm or error-correction approach can alter the physical-qubit count, runtime, and other resources required. CUDA-Q Logical addresses this challenge by allowing researchers to model different system configurations and switch between implementation choices within a common workflow.

The platform is intended for applications where quantum processors could eventually tackle computationally intensive problems in drug discovery, financial modelling, materials development, and scientific research. It can also help quantum hardware developers evaluate how different qubit technologies and error-correction strategies affect the resources required to reach a target number of logical qubits.

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