The China Origin Wukong Platform has achieved a new breakthrough in quantum routing, with a transmission efficiency of 98%
2026-09-07 08:00Chips & Hardware🔥 42.2 heat score
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In early September 2026, relying on China’s self-developed third-generation superconducting quantum computer “Benyuan Wukong”, the research team successfully developed a coherent quantum routing system for bucket-shaped quantum random access memory. This system utilizes high-energy states of superconducting quantum chips to create auxiliary channels and regulates data flow through microwave pulses. The transmission efficiency of a single router reaches 98%, and the overall efficiency of the two-layer network is 93%. The experiment was conducted on real physical machines, verifying the feasibility of coherent, reversible routing in multi-layer architectures, significantly reducing circuit complexity and suppressing noise interference. The relevant results were published in the international top journal *Physical Review X* after peer review. This breakthrough marks a shift in quantum computing research from simply pursuing the number of qubits to the engineering implementation and collaborative verification of complex system-level functions.
China University of Science and TechnologyHefei Comprehensive National Science Center Institute of Artificial IntelligenceOrigin QuantumPhysical Review X
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China University of Science and Technology1
Hefei Comprehensive National Science Center Institute of Artificial Intelligence1
In early September 2026, relying on China’s self-developed third-generation superconducting quantum computer “Benyuan Wukong”, the research team successfully developed a coherent quantum routing system for bucket-type quantum random access memory. The transmission efficiency of a single router reached 98%, and the overall efficiency of the two-layer network was 93%. This system utilizes high-energy levels of superconducting quantum chips to create auxiliary channels, and uses microwave pulses to regulate data flow direction, significantly reducing circuit complexity and suppressing noise interference. The relevant results were published in the international top journal *Physical Review X* after peer review. The experiment was conducted on real physical machines, not only verifying the feasibility of coherent, reversible routing in multi-layer architectures but also indicating that quantum computing research has shifted from simply pursuing the number of bits to the engineering implementation and collaborative verification of complex system-level functions.