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From the 1 of 9 linked papers with an AI index.

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20242026
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9 papers

quant-ph2026

Picosecond-resolved entanglement distribution over an urban free-space channel

Alessandro Laneve, Fabrizio Cienzo, Santiago Gomez +18

Time-evolving entangled states describe quantum particles whose correlations evolve in time according to a well-defined dynamics. Such states can be generated in a variety of physi…

quant-ph2026

A diode nanocavity for fast, efficient and tunable emission of highly entangled photon pairs and Fourier-transform-limited single photons

Ievgen Brytavskyi, Thomas Oberleitner, Christian Weidinger +16

The paper presents a tunable p‑i‑n diode nanocavity that embeds a semiconductor quantum dot, achieving high extraction efficiency, strong Purcell enhancement, and low charge noise…

quant-ph2026

Coherent Control of Quantum-Dot Spins with Cyclic Optical Transitions

Zhe Xian Koong, Urs Haeusler, Jan M. Kaspari +14

Solid-state spins are promising as interfaces from stationary qubits to single photons for quantum communication technologies. Semiconductor quantum dots have excellent optical coh…

physics.optics2025

Exciton and biexciton preparation via coherent swing-up excitation in a GaAs quantum dot embedded in micropillar cavity

Claudia Piccinini, Aleksander Rodek, Abdulmalik A. Madigawa +9

Coherent control of quantum emitters is essential for scalable quantum photonic technologies. The recently proposed swing-up of quantum emitter (SUPER) scheme allows efficient and…

physics.app-ph2025

Low-density InGaAs/AlGaAs Quantum Dots in Droplet-Etched Nanoholes

Saimon F. Covre Da Silva, Ailton J. Garcia, Maximilian Aigner +10

Over the past two decades, epitaxial semiconductor quantum dots (QDs) have demonstrated very promising properties as sources of single photons and entangled photons on-demand. Amon…

quant-ph2025

Optical and magnetic response by design in GaAs quantum dots

Christian Schimpf, Ailton J. Garcia, Zhe X. Koong +24

Quantum networking technologies use spin qubits and their interface to single photons as core components of a network node. This necessitates the ability to co-design the magnetic-…