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20162021
most citedSpectrally pure heralded single photons by spontaneous four-wave mixing in a fiber: reducing impact of dispersion fluctuations

22 citations · 25 across the 4 of their papers we have counts for

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5 papers · 1 filter

quant-ph2021

Quantum frequency conversion of vacuum squeezed light to bright tunable blue squeezed light and higher-order spatial modes

Hugo Kerdoncuf, Jesper B. Christensen, Mikael Lassen

Quantum frequency conversion, the process of shifting the frequency of an optical quantum state while preserving quantum coherence, can be used to produce non-classical light at ot…

quant-ph20213 cited

Round-robin differential phase-time-shifting protocol for quantum key distribution: theory and experiment

Kai Wang, Ilaria Vagniluca, Jie Zhang +4

Quantum key distribution (QKD) allows the establishment of common cryptographic keys among distant parties. Many of the QKD protocols that were introduced in the past involve the c…

quant-ph2018

Unidirectional frequency conversion in microring resonators for on-chip frequency-multiplexed single-photon sources

Mikkel Heuck, Jacob Gade Koefoed, Jesper Bjerge Christensen +4

Microring resonators are attractive for low-power frequency conversion via Bragg-scattering four-wave-mixing due to their comb-like resonance spectrum. However, conversion efficien…

quant-ph201722 cited

Spectrally pure heralded single photons by spontaneous four-wave mixing in a fiber: reducing impact of dispersion fluctuations

Jacob G. Koefoed, Søren M. M. Friis, Jesper B. Christensen +1

We model the spectral quantum-mechanical purity of heralded single photons from a photon-pair source based on nondegenerate spontaneous four-wave mixing taking the impact of distri…

quant-ph2016

Two-dimensional distributed-phase-reference protocol for quantum key distribution

Davide Bacco, Jesper Bjerge Christensen, Mario A. Usuga Castaneda +4

Quantum key distribution (QKD) and quantum communication enable the secure exchange of information between remote parties. Currently, the distributed-phase-reference (DPR) protocol…