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quant-ph20261 cited

Spatial Mode Encoding for Quantum Key Distribution: From Hundreds to Thousands of Modes

Lukas Scarfe, Yingwen Zhang, Ebrahim Karimi

Here, we present a proof-of-principle high-dimensional quantum key distribution (QKD) protocol utilizing the position and momentum entanglement of photon pairs. The protocol exploi…

quant-ph2025

Investigating the Performance of Adaptive Optics on Different Bases of Spatial Modes in Turbulent Channels

Rojan Abolhassani, Lukas Scarfe, Francesco Di Colandrea +3

Quantum key distribution (QKD) allows secure key exchange based on the principles of quantum mechanics, with higher-dimensional photonic states offering enhanced channel capacity a…

quant-ph2025

Programmable photonic quantum walks on lattices with cyclic, toroidal, and cylindrical topology

Alessio D'Errico, Nazanin Dehghan, Maria Gorizia Ammendola +5

Photonic implementations of unitary processes on lattice structures, such as quantum walks, have been demonstrated across various architectures. However, few platforms offer the co…

quant-ph2025

High-Dimensional Quantum Key Distribution with Qubit-like States

Lukas Scarfe, Rojan Abolhassani, Frédéric Bouchard +4

Quantum key distribution (QKD) protocols most often use two conjugate bases in order to verify the security of the quantum channel. In the majority of protocols, these bases are mu…

quant-ph2024

Predicting atmospheric turbulence for secure quantum communications in free space

Tareq Jaouni, Lukas Scarfe, Frédéric Bouchard +4

Atmospheric turbulence is the main barrier to large-scale free-space quantum communication networks. Aberrations distort optical information carriers, thus limiting or preventing t…