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Quantum Algorithms
Hybrid packet switching assisted by classical frame for entanglement-based quantum networks
arXiv
Authors: Hao Zhang, Yuan Li, Chen Zhang, Tao Huang
Year
2023
Paper ID
54151
Status
Preprint
Abstract Read
~2 min
Abstract Words
180
Citations
N/A
Abstract
One of the first problems of studying the quantum internet is how to realize quantum interconnection between users in a quantum network. To address above problem, by referencing the classical Internet, developing the packet switching of quantum networks is a promising way. In this paper, we propose a new hybrid packet switching for entanglement-based quantum networks assisted by classical frame. Different from the previous packet switching for quantum networks based on single photon, the frame used in our scheme is pure classical rather than the classical-quantum structure, and the transmission of classical and quantum signals over physical channels can be independent, which makes our scheme is also valid for quantum networks with heralded entanglement generation. Using our hybrid packet switching, the process of building entanglement channel between end nodes is analogous to the classical packet-switched networks, which provides an effective way to build large-scale packet-switched entanglement-based quantum internet. To verify the feasibility, we perform end-to-end entanglement distribution using our hybrid packet switching in a quantum network and simulate the fidelities of distributed state with respect to the number of hops.
Why This Paper Matters
- It adds a 2023 reference point for readers tracking recent quantum research.
- One of the first problems of studying the quantum internet is how to realize quantum interconnection between users in a quantum network.
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