Mentor initiated Bi-directional Hybrid quantum Communication Protocol

Fuente: arXiv
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Autores principales: Manda, Manoj Kumar, Sisodia, Mitali, Saha, Plaban, Choudhury, Binayak S.
Formato: Preprint
Publicado: 2025
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author Manda, Manoj Kumar
Sisodia, Mitali
Saha, Plaban
Choudhury, Binayak S.
author_facet Manda, Manoj Kumar
Sisodia, Mitali
Saha, Plaban
Choudhury, Binayak S.
contents In this paper, we present a hybrid bidirectional controlled quantum communication protocol between two parties, initiated by a Mentor. Initially, the two main parties and the controller do not share a common quantum entanglement; instead, each party shares entanglement separately with the Mentor. The Mentor's actions create entanglement among the two parties and the controller. The protocol operates deterministically in the absence of environmental noise. Furthermore, we analyze the effects of various types of noises on the protocol, calculate the fidelity, and study how fidelity varies with different parameters. We also provide a theoretical description of the generation of the initial entangled channel used in the protocol. The quantum circuits for entanglement generation and also of the entire protocol are presented. To verify the protocol, these quantum circuits are executed on a real IBM quantum computer.
format Preprint
id arxiv_https___arxiv_org_abs_2503_05847
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Mentor initiated Bi-directional Hybrid quantum Communication Protocol
Manda, Manoj Kumar
Sisodia, Mitali
Saha, Plaban
Choudhury, Binayak S.
Quantum Physics
In this paper, we present a hybrid bidirectional controlled quantum communication protocol between two parties, initiated by a Mentor. Initially, the two main parties and the controller do not share a common quantum entanglement; instead, each party shares entanglement separately with the Mentor. The Mentor's actions create entanglement among the two parties and the controller. The protocol operates deterministically in the absence of environmental noise. Furthermore, we analyze the effects of various types of noises on the protocol, calculate the fidelity, and study how fidelity varies with different parameters. We also provide a theoretical description of the generation of the initial entangled channel used in the protocol. The quantum circuits for entanglement generation and also of the entire protocol are presented. To verify the protocol, these quantum circuits are executed on a real IBM quantum computer.
title Mentor initiated Bi-directional Hybrid quantum Communication Protocol
topic Quantum Physics
url https://arxiv.org/abs/2503.05847