A QoS-inspired routing framework for aggregated quantum networks is applied to two-path examples, showing that optimal channel assignment depends on quantum memory coherence times and that quantum error correction does not always improve fidelity.
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Quality of Service in aggregated quantum networks
A QoS-inspired routing framework for aggregated quantum networks is applied to two-path examples, showing that optimal channel assignment depends on quantum memory coherence times and that quantum error correction does not always improve fidelity.