Intersection and union of subspaces with applications to communication over authenticated classical-quantum channels and composite hypothesis testing

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Hauptverfasser: Warsi, Naqueeb Ahmad, Dasgupta, Ayanava
Format: Preprint
Veröffentlicht: 2023
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author Warsi, Naqueeb Ahmad
Dasgupta, Ayanava
author_facet Warsi, Naqueeb Ahmad
Dasgupta, Ayanava
contents In information theory, we often use intersection and union of the typical sets to analyze various communication problems. However, in the quantum setting it is not very clear how to construct a measurement which behaves analogously to intersection and union of the typical sets. In this work, we construct a projection operator which behaves very similarly to intersection and union of the typical sets. Our construction relies on the Jordan's lemma. Using this construction we study the problem of communication over authenticated classical-quantum channels and derive its capacity. As another application of our construction, we also study the problem of quantum asymmetric composite hypothesis testing.
format Preprint
id arxiv_https___arxiv_org_abs_2311_10524
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Intersection and union of subspaces with applications to communication over authenticated classical-quantum channels and composite hypothesis testing
Warsi, Naqueeb Ahmad
Dasgupta, Ayanava
Information Theory
Quantum Physics
In information theory, we often use intersection and union of the typical sets to analyze various communication problems. However, in the quantum setting it is not very clear how to construct a measurement which behaves analogously to intersection and union of the typical sets. In this work, we construct a projection operator which behaves very similarly to intersection and union of the typical sets. Our construction relies on the Jordan's lemma. Using this construction we study the problem of communication over authenticated classical-quantum channels and derive its capacity. As another application of our construction, we also study the problem of quantum asymmetric composite hypothesis testing.
title Intersection and union of subspaces with applications to communication over authenticated classical-quantum channels and composite hypothesis testing
topic Information Theory
Quantum Physics
url https://arxiv.org/abs/2311.10524