Entanglement swapping for partially entangled qudits and the role of quantum complementarity

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Main Authors: Starke, Diego S., Basso, Marcos L. W., Céleri, Lucas C., Maziero, Jonas
Format: Preprint
Published: 2025
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author Starke, Diego S.
Basso, Marcos L. W.
Céleri, Lucas C.
Maziero, Jonas
author_facet Starke, Diego S.
Basso, Marcos L. W.
Céleri, Lucas C.
Maziero, Jonas
contents We extend the entanglement swapping protocol (ESP) to partially entangled qudit states and analyze the process within the framework of complete complementarity relations (CCRs). Building on previous results for qubits, we show that the average distributed entanglement between two parties via ESP is bounded above by the initial entanglement of one of the input pairs, and also by the product of the initial entanglements. Notably, we find that using initial states with vanishing local quantum coherence is sufficient to capture the essential features of the protocol, simplifying the analysis. By exploring the cases of qubits and qutrits, we observe that the upper bound on the average distributed entanglement -- expressed in terms of the product of the initial entanglements -- can be improved, and we conjecture what this tighter bound might be. Finally, we discuss the role of quantum complementarity in the ESP and show how local predictability constrains the entanglement that can be operationally distributed via ESP.
format Preprint
id arxiv_https___arxiv_org_abs_2508_00813
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Entanglement swapping for partially entangled qudits and the role of quantum complementarity
Starke, Diego S.
Basso, Marcos L. W.
Céleri, Lucas C.
Maziero, Jonas
Quantum Physics
We extend the entanglement swapping protocol (ESP) to partially entangled qudit states and analyze the process within the framework of complete complementarity relations (CCRs). Building on previous results for qubits, we show that the average distributed entanglement between two parties via ESP is bounded above by the initial entanglement of one of the input pairs, and also by the product of the initial entanglements. Notably, we find that using initial states with vanishing local quantum coherence is sufficient to capture the essential features of the protocol, simplifying the analysis. By exploring the cases of qubits and qutrits, we observe that the upper bound on the average distributed entanglement -- expressed in terms of the product of the initial entanglements -- can be improved, and we conjecture what this tighter bound might be. Finally, we discuss the role of quantum complementarity in the ESP and show how local predictability constrains the entanglement that can be operationally distributed via ESP.
title Entanglement swapping for partially entangled qudits and the role of quantum complementarity
topic Quantum Physics
url https://arxiv.org/abs/2508.00813