321 citations · 788 across the 20 of their papers we have counts for
6 papers · 1 filter
Quantum dot single-photon emission coupled into single-mode fibers with 3D printed micro-objectives
Lucas Bremer, Ksenia Weber, Sarah Fischbach +10
User-friendly single-photon sources with high photon-extraction efficiency are crucial building blocks for photonic quantum applications. For many of these applications, such as lo…
Deterministically fabricated quantum dot single-photon source emitting indistinguishable photons in the telecom O-band
N. Srocka, P. Mrowiński, J. Große +4
In this work we develop and study single-photon sources based on InGaAs quantum dots (QDs) emitting in the telecom O-band. The quantum devices are fabricated using in-situ electron…
Plug&play fibre-coupled 73 kHz single-photon source operating in the telecom O-band
Anna Musial, Kinga Zolnacz, Nicole Srocka +18
A user-friendly fibre-coupled single-photon source operating at telecom wavelengths is a key component of photonic quantum networks providing long-haul ultra-secure data exchange.…
Deterministically Fabricated Solid-State Quantum-Light Sources
Sven Rodt, Stephan Reitzenstein, Tobias Heindel
This topical review focuses on solid-state quantum-light sources which are fabricated in a deterministic fashion. In this framework we cover quantum emitters represented by semicon…
Optimized Designs for Telecom-Wavelength Quantum Light Sources Based on Hybrid Circular Bragg Gratings
Lucas Rickert, Timm Kupko, Sven Rodt +2
We present a design study of quantum light sources based on hybrid circular Bragg Gratings (CBGs) for emission wavelengths in the telecom O-band. The evaluated CBG designs show pho…
Indistinguishable photons from deterministically integrated single quantum dots in heterogeneous GaAs/SiN quantum photonic circuits
Peter Schnauber, Anshuman Singh, Johannes Schall +6
Silicon photonics enables scaling of quantum photonic systems by allowing the creation of extensive, low-loss, reconfigurable networks linking various functional on-chip elements.…