Record Photon Information Efficiency with Optical Clock Transmission and Recovery of 12.5 bits/photon over an Optical Channel with 77 dB Loss
Fuente:
arXiv
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| Autori principali: | , , , , , , , , , , , , , , , , , , , , |
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| Natura: | Preprint |
| Pubblicazione: |
2023
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| Soggetti: | |
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| _version_ | 1866917569955364864 |
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| author | Essiambre, René-Jean Guo, Cheng Dacha, Sai Kanth Ashikhmin, Alexei Blanco-Redondo, Andrea Kschischang, Frank R. Banaszek, Konrad Weiner, Matthew Kopf, Rose Crawley, Ian Idjadi, Mohamad H. Sayem, Ayed A. Zhao, Jie Sandoz, James D. Fontaine, Nicolas Menkart, Nicole Ryf, Roland Cloonan, John Vasilyev, Michael Murphy, Thomas E. Burrows, Ellsworth C. |
| author_facet | Essiambre, René-Jean Guo, Cheng Dacha, Sai Kanth Ashikhmin, Alexei Blanco-Redondo, Andrea Kschischang, Frank R. Banaszek, Konrad Weiner, Matthew Kopf, Rose Crawley, Ian Idjadi, Mohamad H. Sayem, Ayed A. Zhao, Jie Sandoz, James D. Fontaine, Nicolas Menkart, Nicole Ryf, Roland Cloonan, John Vasilyev, Michael Murphy, Thomas E. Burrows, Ellsworth C. |
| contents | We experimentally demonstrate optical detection at 12.5~bits per incident photon, 9.4~dB higher than the theoretical limit of conventional coherent detection. A single laser transmits both data and optical clock, undergoes 77~dB of attenuation before quantum detection followed by optical clock and data recovery. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2310_02191 |
| institution | arXiv |
| publishDate | 2023 |
| record_format | arxiv |
| spellingShingle | Record Photon Information Efficiency with Optical Clock Transmission and Recovery of 12.5 bits/photon over an Optical Channel with 77 dB Loss Essiambre, René-Jean Guo, Cheng Dacha, Sai Kanth Ashikhmin, Alexei Blanco-Redondo, Andrea Kschischang, Frank R. Banaszek, Konrad Weiner, Matthew Kopf, Rose Crawley, Ian Idjadi, Mohamad H. Sayem, Ayed A. Zhao, Jie Sandoz, James D. Fontaine, Nicolas Menkart, Nicole Ryf, Roland Cloonan, John Vasilyev, Michael Murphy, Thomas E. Burrows, Ellsworth C. Quantum Physics Optics We experimentally demonstrate optical detection at 12.5~bits per incident photon, 9.4~dB higher than the theoretical limit of conventional coherent detection. A single laser transmits both data and optical clock, undergoes 77~dB of attenuation before quantum detection followed by optical clock and data recovery. |
| title | Record Photon Information Efficiency with Optical Clock Transmission and Recovery of 12.5 bits/photon over an Optical Channel with 77 dB Loss |
| topic | Quantum Physics Optics |
| url | https://arxiv.org/abs/2310.02191 |