activity
20152022
most citedSignatures of a dissipative phase transition in photon correlation measurements

174 citations · 701 across the 22 of their papers we have counts for

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13 papers · 1 filter

quant-ph20229 cited

All-optical Tuning of Indistinguishable Single-Photons Generated in Three-level Quantum Systems

Łukasz Dusanowski, Chris Gustin, Stephen Hughes +2

Resonance fluorescence of two-level quantum systems has emerged as a powerful tool in quantum information processing. Extension of this approach to higher-level systems provides ne…

quant-ph20214 cited

Quantum interference between independent solid-state single-photon sources separated by 300 km fiber

Xiang You, Ming-Yang Zheng, Si Chen +23

In the quest to realize a scalable quantum network, semiconductor quantum dots (QDs) offer distinct advantages including high single-photon efficiency and indistinguishability, hig…

quant-ph2021

Quantifying quantum coherence in polariton condensates

Carolin Lüders, Matthias Pukrop, Elena Rozas +5

We theoretically and experimentally investigate quantum features of an interacting light-matter system from a multidisciplinary perspective, unifying approaches from semiconductor…

quant-ph2021

Purcell-enhanced single photon source based on a deterministically placed WSe monolayer quantum dot in a circular Bragg grating cavity

O. Iff, Q. Buchinger, M. Moczała-Dusanowska +6

We demonstrate a deterministic Purcell-enhanced single-photon source realized by integrating an atomically thin WSe layer with a circular Bragg grating cavity. The cavity sig…

quant-ph2020

Entangled photon pairs from quantum dots embedded in a self-aligned cavity

Laia Ginés, Carlo Pepe, Junior Gonzales +4

We introduce a scalable photonic platform that enables efficient generation of entangled photon pairs from a semiconductor quantum dot. Our system, which is based on a self-aligned…

quant-ph2020

Heralded non-destructive quantum entangling gate with single-photon sources

Jin-Peng Li, Xuemei Gu, Jian Qin +10

Heralded entangling quantum gates are an essential element for the implementation of large-scale optical quantum computation. Yet, the experimental demonstration of genuine heralde…