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New semiconductor could allow classical and quantum computing on the same chip, thanks to superconductivity breakthrough - Live Science

Google News – Quantum Computing
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⚡ Quantum Brief
Researchers have developed a novel semiconductor that integrates classical and quantum computing on a single chip by leveraging superconductivity, marking a breakthrough in hybrid computing architectures. The material enables quantum bits (qubits) to coexist with traditional transistors, eliminating the need for separate quantum processors and reducing latency in data transfer between classical and quantum systems. This advancement stems from a 2025 discovery where superconducting properties were engineered into a conventional semiconductor, allowing quantum states to persist at higher temperatures than typical qubit environments. Potential applications include real-time quantum error correction, accelerated AI training, and ultra-efficient cryptography, bridging the gap between current silicon-based tech and quantum capabilities. Industry experts suggest this could democratize quantum computing by lowering hardware costs and complexity, though large-scale commercialization may still require years of refinement.
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New semiconductor could allow classical and quantum computing on the same chip, thanks to superconductivity breakthrough - Live Science. Google News – Quantum Computing

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