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March 21, 2026Annalen der Physik0 citationsOpen Access

Entanglement Distribution in Quantum Networks Via Swapping of Partially Entangled Pure States

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HGHenrique Pose GuerraTSTailan S. SarubiRCRafael Chaves

Key Points

  • To explore how entanglement swapping can distribute entanglement across different network topologies using partially entangled states.
  • Analyzed different topologies of quantum networks including linear, star, and hybrid configurations.
  • Applied the entanglement swapping protocol to initially partially entangled pure states.
  • Evaluated success probabilities for generating maximally entangled states.
  • Entanglement swapping can effectively transmit partial entanglement across various network structures.
  • Success probabilities for achieving maximally entangled states were analyzed and optimized.
  • New insights were gained into the dynamics of entanglement distribution in quantum networks.

Abstract

ABSTRACT The entanglement swapping protocol (ESP) is a fundamental primitive for distributing quantum correlations across distant nodes in a quantum network. Recent studies have demonstrated that even when the involved qubit pairs are only partially entangled, it is still possible to concentrate and transmit entanglement via Bell‐basis measurements. In this work, we extend these ideas to quantum networks with various topologies–including linear, star, and hybrid configurations–by analyzing the application of the ESP to initially partially entangled pure states. We investigate how entanglement evolves under such protocols by considering the transformations of the initial states and evaluating the success probabilities for generating maximally entangled states at the output. Our results offer new insights into the dynamics of the entanglement distribution in quantum networks.

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Cite This Study

Guerra et al. (2026) studied this question.

synapsesocial.com/papers/69be37ce6e48c4981c677ae2https://doi.org/10.1002/andp.202500475
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