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quant-ph2026

Industry-ready spin-photon interfaces for hybrid photonic quantum computing

Hêlio Huet, Hubert Lam, Thibaut Pollet +45

The paper demonstrates large‑scale, foundry‑compatible semiconductor quantum‑dot devices that act as efficient spin‑photon interfaces, achieving near‑unity photon purity, multi‑pho…

quant-ph2026

Boosted Optomechanics with a Fluid of Nonlinear Polaritons

Florent Malabat, Martin Colombano, Titouan Lévêque +4

Merging optomechanics and polaritonics opens stimulating perspectives like the giant enhancement of optomechanical interaction and the enrichment of optomechanics with effective no…

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-ph2025

Tailoring quantum walks in integrated photonic lattices

A. Raymond, P. Cathala, M. Morassi +4

Unlike discrete photonic circuits, which manipulate photons step-by-step using a series of optical elements, arrays of coupled waveguides enable photons to interfere continuously a…

quant-ph2025

Biphoton state generation and engineering with bright hybrid III-V/Silicon photonic devices

Lorenzo Lazzari, Jérémie Schuhmann, Othmane Meskine +7

Hybrid photonic circuits, harnessing the complementary strengths of multiple materials, represent a key resource to enable compact, scalable platforms for quantum technologies. In…

quant-ph2025

Benchmarking quantum key distribution by mixing single photons and laser light

Yann Portella, Petr Steindl, Juan Rafael Álvarez +8

Quantum key distribution is a key application of quantum mechanics, shaping the future of privacy and secure communications. Many protocols require single photons, often approximat…