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quant-ph2026

Towards Stirling cooler operable single-photon sources based on low-noise GaAs quantum dots

Maximilian Aigner, Jana Schlücking, Eva Schöll +15

For photonic quantum technology applications, sources capable of emitting photons with indistinguishability close to unity are essential. Ideally, these sources should not require…

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-ph2025

Electric-field control of photon indistinguishability in cascaded decays in quantum dots

Gabriel Undeutsch, Maximilian Aigner, Ailton J. Garcia +8

Photon indistinguishability, entanglement, and antibunching are key ingredients in quantum optics and photonics. Decay cascades in quantum emitters offer a simple method to create…

quant-ph2025

Passive Demultiplexed Two-photon State Generation from a Quantum Dot

Yusuf Karli, Iker Avila Arenas, Christian Schimpf +11

High-purity multi-photon states are essential for photonic quantum computing. Among existing platforms, semiconductor quantum dots offer a promising route to scalable and determini…

quant-ph2024

Many-body quantum register for a spin qubit

Martin Hayhurst Appel, Alexander Ghorbal, Noah Shofer +8

Quantum networks require quantum nodes with coherent optical interfaces and multiple stationary qubits. In terms of optical properties, semiconductor quantum dots are highly compel…

quant-ph2024

Tuning the coherent interaction of an electron qubit and a nuclear magnon

Noah Shofer, Leon Zaporski, Martin Hayhurst Appel +9

A central spin qubit interacting coherently with an ensemble of proximal spins can be used to engineer entangled collective states or a multi-qubit register. Making full use of thi…