Saved in:
Bibliographic Details
Main Authors: Hanzo, Lajos, Babar, Zunaira, Cai, Zhenyu, Chandra, Daryus, Djordjevic, Ivan B., Koczor, Balint, Ng, Soon Xin, Razavi, Mohsen, Simeone, Osvaldo
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2412.00987
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866929610083532800
author Hanzo, Lajos
Babar, Zunaira
Cai, Zhenyu
Chandra, Daryus
Djordjevic, Ivan B.
Koczor, Balint
Ng, Soon Xin
Razavi, Mohsen
Simeone, Osvaldo
author_facet Hanzo, Lajos
Babar, Zunaira
Cai, Zhenyu
Chandra, Daryus
Djordjevic, Ivan B.
Koczor, Balint
Ng, Soon Xin
Razavi, Mohsen
Simeone, Osvaldo
contents The recent advances in quantum information processing, sensing and communications are surveyed with the objective of identifying the associated knowledge gaps and formulating a roadmap for their future evolution. Since the operation of quantum systems is prone to the deleterious effects of decoherence, which manifests itself in terms of bit-flips, phase-flips or both, the pivotal subject of quantum error mitigation is reviewed both in the presence and absence of quantum coding. The state-of-the-art, knowledge gaps and future evolution of quantum machine learning are also discussed, followed by a discourse on quantum radar systems and briefly hypothesizing about the feasibility of integrated sensing and communications in the quantum domain. Finally, we conclude with a set of promising future research ideas in the field of ultimately secure quantum communications with the objective of harnessing ideas from the classical communications field.
format Preprint
id arxiv_https___arxiv_org_abs_2412_00987
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Quantum Information Processing, Sensing and Communications: Their Myths, Realities and Futures
Hanzo, Lajos
Babar, Zunaira
Cai, Zhenyu
Chandra, Daryus
Djordjevic, Ivan B.
Koczor, Balint
Ng, Soon Xin
Razavi, Mohsen
Simeone, Osvaldo
Quantum Physics
Information Theory
The recent advances in quantum information processing, sensing and communications are surveyed with the objective of identifying the associated knowledge gaps and formulating a roadmap for their future evolution. Since the operation of quantum systems is prone to the deleterious effects of decoherence, which manifests itself in terms of bit-flips, phase-flips or both, the pivotal subject of quantum error mitigation is reviewed both in the presence and absence of quantum coding. The state-of-the-art, knowledge gaps and future evolution of quantum machine learning are also discussed, followed by a discourse on quantum radar systems and briefly hypothesizing about the feasibility of integrated sensing and communications in the quantum domain. Finally, we conclude with a set of promising future research ideas in the field of ultimately secure quantum communications with the objective of harnessing ideas from the classical communications field.
title Quantum Information Processing, Sensing and Communications: Their Myths, Realities and Futures
topic Quantum Physics
Information Theory
url https://arxiv.org/abs/2412.00987