Saved in:
Bibliographic Details
Main Authors: Chatterjee, Souvik, Deb, Prasenjit, Datta, Chandan, Agrawal, Pankaj
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2512.24274
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866914227265994752
author Chatterjee, Souvik
Deb, Prasenjit
Datta, Chandan
Agrawal, Pankaj
author_facet Chatterjee, Souvik
Deb, Prasenjit
Datta, Chandan
Agrawal, Pankaj
contents Multipartite entangled states possess a number of non-intuitive properties, making them a useful resource for various quantum information-processing tasks. The three-qubit W-state is one such example where every state is robust to single-qubit loss. However, this state is not suitable for deterministic distribution, and deterministic communication protocols. Here, we focus on the distribution of a non-symmetric version of such states, namely $W_{\mathrm{mod}}$ states. These states belong to the W-class, and have one ebit of entanglement across a specific bipartition, enabling deterministic teleportation and superdense coding. In particular, we describe a few protocols through which these multipartite entangled states can be distributed {\it deterministically} in a quantum network by first preparing them locally in a central node and then transmitting individual qubits to the end nodes. We analyse the performance of these protocols based on the fidelity of the final distributed state, considering all types of noises that can act during the distribution. Finally, we compare the performance of the protocols to the case where the distribution is performed without any central node.
format Preprint
id arxiv_https___arxiv_org_abs_2512_24274
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Deterministic distribution of W-class states in quantum networks
Chatterjee, Souvik
Deb, Prasenjit
Datta, Chandan
Agrawal, Pankaj
Quantum Physics
Multipartite entangled states possess a number of non-intuitive properties, making them a useful resource for various quantum information-processing tasks. The three-qubit W-state is one such example where every state is robust to single-qubit loss. However, this state is not suitable for deterministic distribution, and deterministic communication protocols. Here, we focus on the distribution of a non-symmetric version of such states, namely $W_{\mathrm{mod}}$ states. These states belong to the W-class, and have one ebit of entanglement across a specific bipartition, enabling deterministic teleportation and superdense coding. In particular, we describe a few protocols through which these multipartite entangled states can be distributed {\it deterministically} in a quantum network by first preparing them locally in a central node and then transmitting individual qubits to the end nodes. We analyse the performance of these protocols based on the fidelity of the final distributed state, considering all types of noises that can act during the distribution. Finally, we compare the performance of the protocols to the case where the distribution is performed without any central node.
title Deterministic distribution of W-class states in quantum networks
topic Quantum Physics
url https://arxiv.org/abs/2512.24274