17
collaborators
2020–2021
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
2 Posters
| Title | Conference | Co-authors |
|---|---|---|
| A Quantum Key Distribution Testbed using a Plug-and-Play Telecom-wavelength Single-Photon Source | QCRYPT 2021 | Lucas Rickert, Felix Urban, Jan Große, Nicole Srocka, Sven Rodt, Anna Musial, Kinga Zolnacz, Pawel Mergo, Kamil Dybka, Waclaw Urbanczyk, Grzegorz Sek, Sven Burger, Stephan Reitzenstein, Tobias Heindel |
Deterministic solid-state quantum light sources are key building blocks in photonic quantum technologies. While several proof-of-principle experiments of quantum communication using such sources have been realized, all of them required bulky setups. Here, we evaluate for the first time the performance of a compact and stand-alone fiber-coupled single-photon source emitting in the telecom O-band (1321nm) for its application in quantum key distribution (QKD). For this purpose, we developed a compact 19” rack module including a deterministically fiber-coupled quantum dot single-photon source integrated into a Stirling cryocooler, a pulsed diode laser for driving the quantum dot, and a fiber-based spectral filter. We further employed this compact quantum light source in a QKD testbed designed for polarization coding via the BB84 protocol resulting in g20 = 0.10+\-0.01 and a raw key rate of up to 4.72(13)kHz using an external laser for excitation. In this setting we investigate the achievable performance expected in full implementations of QKD. Using 2D temporal filtering on receiver side, we evaluate optimal parameter settings for different QKD transmission scenarios taking also finite key size effects into account. Using optimized parameter sets for the temporal acceptance time window, we predict a maximal tolerable loss of 23.19dB. Finally, we compare our results to previous QKD systems using quantum dot single-photon sources. Our study represents an important step forward in the development of fiber-based quantum-secured communication networks exploiting sub-Poissonian quantum light sources. |
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| Tools for the Performance Optimization of Single-Photon Quantum Key Distribution | QCRYPT 2020 | Martin von Helversen, Lucas Rickert, André Strittmatter, Manuel Gschrey, Sven Rodt, Stephan Reitzenstein, Tobias Heindel |
Solid-state quantum light sources emitting triggered single photons or entangled photon pairs have the potential to boost the performance of quantum key distribution (QKD) systems. Proof-of-principle experiments affirmed these prospects, but further efforts are necessary to push this field beyond its current status. In this work, we report on tools for the performance optimization of QKD systems using single-photon sources (SPSs). For this purpose, we developed a basic QKD testbed comprising a triggered solid-state single-photon source and a receiver module designed for four-state polarization coding via the BB84 protocol. Exploiting temporal filtering of the signal acceptance time window in a two-dimensional parameter space we analyze the sifted key fraction and the quantum bit error ratio (QBER) expected in in full implementations of QKD. Furthermore, we demonstrate real-time security monitoring by analyzing the QBER and the photon statistics, in terms of g(2)(\tau), inside the quantum channel in real-time during the key distribution process. This is achieved by correlating the photon flux recorded at the four ports of our receiver. Our findings can be directly applied and extended for advanced schemes of quantum communication representing an important contribution towards the development of QKD-secured communication networks based on quantum light sources. |
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Collaborators
| Co-author | Joint talks |
|---|---|
| Lucas Rickert | 2 |
| Stephan Reitzenstein | 2 |
| Sven Rodt | 2 |
| Tobias Heindel | 2 |
| André Strittmatter | 1 |
| Anna Musial | 1 |
| Felix Urban | 1 |
| Grzegorz Sek | 1 |
| Jan Große | 1 |
| Kamil Dybka | 1 |
| Kinga Zolnacz | 1 |
| Manuel Gschrey | 1 |
| Martin von Helversen | 1 |
| Nicole Srocka | 1 |
| Pawel Mergo | 1 |
| Sven Burger | 1 |
| Waclaw Urbanczyk | 1 |