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| Main Authors: | , , , , , , , , |
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| Format: | Preprint |
| Published: |
2024
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| Subjects: | |
| Online Access: | https://arxiv.org/abs/2412.00987 |
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| _version_ | 1866929610083532800 |
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| 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 |