Enhanced Two-Way Teleportation of Entangled States with Six-Qubit Cluster State
Vedhanayagi R, Soubhik De, Basherrudin Mahmud Ahmed A, Alok Sharan

TL;DR
This paper introduces a resource-efficient two-way teleportation protocol for entangled states using a six-qubit cluster state, with high fidelity demonstrated through simulations and no need for CNOT gates or auxiliary qubits.
Contribution
The work presents a novel two-way teleportation protocol utilizing a six-qubit cluster state that improves resource efficiency and fidelity over previous methods.
Findings
High teleportation fidelity confirmed by simulations
No CNOT gates or auxiliary qubits needed
Enhanced resource efficiency compared to prior protocols
Abstract
This work presents a two-way teleportation protocol for the transfer of an unknown two-qubit quantum state between two parties Alice and Bob, utilizing a six-qubit cluster state. This bidirectional exchange is achieved by performing Bell measurements on the qubit pairs of Alice and Bob, ensuring the successful teleportation of the quantum state for both parties. We demonstrate the proposed protocol by designing a teleportation circuit that incorporates the necessary quantum gates. The fidelity of the teleportation process is evaluated through simulations, confirming the accuracy and reliability of the proposed scheme. The protocol restores teleported states without requiring CNOT operations or auxiliary qubits, offering a significant advantage in resource efficiency(utilization). A comparative analysis of the intrinsic efficiency with previous approaches establishes that the proposed…
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Taxonomy
TopicsQuantum Computing Algorithms and Architecture · Quantum Information and Cryptography · Quantum and electron transport phenomena
