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SurfaceNet: Fault-Tolerant Quantum Networks with Surface Codes

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arxiv 2310.13628 v1 pith:M2KK4YD3 submitted 2023-10-20 quant-ph cs.NI

classification quant-phcs.NI
keywords quantumcodesnetworkssurfacecommunicationnetworkqubitssurfacenet
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Quantum networks serve as the means to transmit information, encoded in quantum bits or qubits, between quantum processors that are physically separated. Given the instability of qubits, the design of such networks is challenging, necessitating a careful balance between reliability and efficiency. Typically, quantum networks fall into two categories: those utilize quantum entanglements for quantum teleportation, and those directly transfer quantum message. In this paper, we present SurfaceNet, a quantum network in the second category that employs surface codes as logical qubits for preserving and transferring message. Our approach of using surface codes can fault-tolerantly correct both operational and photon loss errors within the network. We propose a novel one-way quantum communication procedure, designed to better integrate surface codes into our network architecture. We also propose an efficient routing protocol that optimizes resource utilization for our communication procedure. Simulation results demonstrate that SurfaceNet significantly enhances the overall communication fidelity.

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  1. Feasibility of Logical Bell State Generation in Memory Assisted Quantum Networks

    quant-ph 2024-12 conditional novelty 6.0 of 10

    Logical Bell-state protocols with d=3/5 surface and Bacon-Shor codes in ion traps need gate error rates around 10^-4 to 10^-5 to beat unencoded Bell states at 1 km, and the non-local protocol reaches about 33 Hz over ...

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