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Bibliographic Details
Main Authors: Khabbazi-Oskouei, Samad, Mancini, Stefano, Rexiti, Milajiguli
Format: Preprint
Published: 2023
Subjects:
Online Access:https://arxiv.org/abs/2307.08821
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author Khabbazi-Oskouei, Samad
Mancini, Stefano
Rexiti, Milajiguli
author_facet Khabbazi-Oskouei, Samad
Mancini, Stefano
Rexiti, Milajiguli
contents We extend the notion of quantum reading to the case where the information to be retrieved, which is encoded into a set of quantum channels, is of quantum nature. We use two qubit unitaries describing the system environment interaction, with the initial environment state determining the system's input output channel and hence the encoded information. The performance of the most relevant two-qubit unitaries is determined with two different approaches: i) one-shot quantum capacity of the channel arising between environment and system's output; ii) estimation of parameters characterizing the initial quantum state of the environment. The obtained results are mostly in (qualitative) agreement, with some distinguishing features that include the CNOT unitary.
format Preprint
id arxiv_https___arxiv_org_abs_2307_08821
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Quantum reading of quantum information
Khabbazi-Oskouei, Samad
Mancini, Stefano
Rexiti, Milajiguli
Quantum Physics
We extend the notion of quantum reading to the case where the information to be retrieved, which is encoded into a set of quantum channels, is of quantum nature. We use two qubit unitaries describing the system environment interaction, with the initial environment state determining the system's input output channel and hence the encoded information. The performance of the most relevant two-qubit unitaries is determined with two different approaches: i) one-shot quantum capacity of the channel arising between environment and system's output; ii) estimation of parameters characterizing the initial quantum state of the environment. The obtained results are mostly in (qualitative) agreement, with some distinguishing features that include the CNOT unitary.
title Quantum reading of quantum information
topic Quantum Physics
url https://arxiv.org/abs/2307.08821