Quantum Limits on the Capacity of Multispan Links with Phase-Sensitive Amplification
arXiv:2206.14624 · doi:10.1109/JLT.2023.3256585
Abstract
The capacity of a linear attenuating optical channel with the signal regenerated using quantum-limited phase-sensitive amplifiers is analyzed for conventional and generalized detection scenarios. The continuous model of distributed amplification determines the attainable capacity for long-haul links under the total power constraint.
3 pages, 1 figure. Presented at 26th International Conference on Optical Network Design and Modeling (ONDM), 16-19 May 2022, Warsaw, Poland
References in corpus (4)
- Classical capacity of phase-sensitive Gaussian quantum channels
- Quantum Limits on the Capacity of Multispan Links with Phase-sensitive Amplification
- Quantum Limits on the Capacity of Multispan Links with Phase-Sensitive Amplification
- Ultimate capacity limit of a multi-span link with phase-insensitive amplification
Cited by in corpus (5)
- Continuous-variable quantum key distribution with noisy squeezed states
- Continuous-variable quantum key distribution over multispan links employing phase-insensitive and phase-sensitive amplifiers
- Quantum Limits on the Capacity of Multispan Links with Phase-sensitive Amplification
- Quantum Limits on the Capacity of Multispan Links with Phase-Sensitive Amplification
- Quantum communications in continuous variable systems