Stable transmission of high-dimensional quantum states over a 2 km multicore fiber
arXiv:2001.11226 · doi:10.1109/JSTQE.2019.2960937
Abstract
High-dimensional quantum states have already settled their advantages in different quantum technology applications. However, their reliable transmission in fiber links remains an open challenge that must be addressed to boost their application, e.g. in the future quantum internet. Here, we prove how path encoded high-dimensional quantum states can be reliably transmitted over a 2 km long multicore fiber, taking advantage of a phase-locked loop system guaranteeing a stable interferometric detection.
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- Certification of a Nonprojective Qudit Measurement using Multiport Beamsplitters
- "Nonlocality-of-a-single-photon" based Quantum Key Distribution and Random Number Generation schemes and their device-independent security analysis
- Space-division multiplexed phase compensation for quantum communication: concept and field demonstration
- A Survey of OAM-Encoded High-Dimensional Quantum Key Distribution: Foundations, Experiments, and Recent Trends