On the Analysis of a Multipartite Entanglement Distribution Switch


연구 분야: Cryptography



학회: Proceedings of the ACM on Measurement and Analysis of Computing Systems, Volume 4, Issue 2


초록

We study a quantum switch that distributes maximally entangled multipartite states to sets of users. The entanglement switching process requires two steps: first, each user attempts to generate bipartite entanglement between itself and the switch; and second, the switch performs local operations and a measurement to create multipartite entanglement for a set of users. In this work, we study a simple variant of this system, wherein the switch has infinite memory and the links that connect the users to the switch are identical. Further, we assume that all quantum states, if generated successfully, have perfect fidelity and that decoherence is negligible. This problem formulation is of interest to several distributed quantum applications, while the technical aspects of this work result in new contributions within queueing theory. Via extensive use of Lyapunov functions, we derive necessary and sufficient conditions for the stability of the system and closed-form expressions for the switch capacity and the expected number of qubits in memory.


Author Profile
Philippe Nain

Inria Lyon France

France
Author Profile
Gayane Vardoyan

University of Massachusetts Amherst MA USA

Morocco
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Saikat Guha

University of Arizona Tucson AZ USA

Azerbaijan

📄 논문 정보

발행 연도 2020년
인용수 18
출판 국가 Azerbaijan, Morocco, France
사이트 ACM
좋아요 수 0

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