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20242026
most citedIndistinguishability of remote quantum dot-cavity single-photon sources

1 citations · 2 across the 3 of their papers we have counts for

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quant-ph2026

Near-identical photons from distant quantum dot-cavity devices

Thibaut Pollet, Victor Guilloux, Duc-Duy Tran +13

Scalable optical quantum technologies require interference between large numbers of indistinguishable single-photons emitted by independent sources. Semiconductor quantum dots are…

quant-ph2026

Exponential improvement in benchmarking multiphoton interference

Rodrigo M. Sanz, Emilio Annoni, Stephen C. Wein +4

Several photonic quantum technologies rely on the ability to generate multiple indistinguishable photons. Benchmarking the level of indistinguishability of these photons is essenti…

quant-ph20261 cited

Quantum Energetic Advantage before Computational Advantage in Boson Sampling

Ariane Soret, Nessim Dridi, Stephen C. Wein +3

Understanding the energetic efficiency of quantum computers is essential for assessing their scalability and for determining whether quantum technologies can outperform classical c…

quant-ph2025

Optimizing the quantum interference between single photons and local oscillator with photon correlations

Hubert Lam, Juan R. Álvarez, Petr Steindl +10

The quantum interference between a coherent state and a single photon is an important tool in continuous variable optical quantum technologies to characterize and engineer non-Gaus…

quant-ph20241 cited

Indistinguishability of remote quantum dot-cavity single-photon sources

Mathias Pont, Stephen C. Wein, Ilse Maillette de Buy Wenniger +10

Generating identical photons from remote emitter-based bright single-photon sources is an important step for scaling up optical quantum technologies. Here, we study the Hong-Ou-Man…

quant-ph2024

Minimizing resource overhead in fusion-based quantum computation using hybrid spin-photon devices

Stephen C. Wein, Timothée Goubault de Brugière, Luka Music +3

We present three schemes for constructing a (2,2)-Shor-encoded 6-ring photonic resource state for fusion-based quantum computing, each relying on a different type of photon source.…