Marcus Reindl
Marcus Reindl
Verified email at jku.at
Title
Cited by
Cited by
Year
Highly indistinguishable and strongly entangled photons from symmetric GaAs quantum dots
D Huber, M Reindl, Y Huo, H Huang, JS Wildmann, OG Schmidt, ...
Nature communications 8 (1), 1-7, 2017
1382017
On-demand generation of background-free single photons from a solid-state source
L Schweickert, KD Jöns, KD Zeuner, SF Covre da Silva, H Huang, ...
Applied Physics Letters 112 (9), 093106, 2018
1202018
Wavelength-tunable sources of entangled photons interfaced with atomic vapours
R Trotta, J Martín-Sánchez, JS Wildmann, G Piredda, M Reindl, C Schimpf, ...
Nature communications 7 (1), 1-7, 2016
1102016
Strain-tunable GaAs quantum dot: A nearly dephasing-free source of entangled photon pairs on demand
D Huber, M Reindl, SFC Da Silva, C Schimpf, J Martín-Sánchez, H Huang, ...
Physical review letters 121 (3), 033902, 2018
792018
Phonon-assisted two-photon interference from remote quantum emitters
M Reindl, KD Jöns, D Huber, C Schimpf, Y Huo, V Zwiller, A Rastelli, ...
Nano letters 17 (7), 4090-4095, 2017
722017
An artificial Rb atom in a semiconductor with lifetime-limited linewidth
JP Jahn, M Munsch, L Béguin, AV Kuhlmann, M Renggli, Y Huo, F Ding, ...
Physical Review B 92 (24), 245439, 2015
602015
Semiconductor quantum dots as an ideal source of polarization-entangled photon pairs on-demand: a review
D Huber, M Reindl, J Aberl, A Rastelli, R Trotta
Journal of Optics 20 (7), 073002, 2018
372018
Resonance fluorescence of gaas quantum dots with near-unity photon indistinguishability
E Schöll, L Hanschke, L Schweickert, KD Zeuner, M Reindl, ...
Nano letters 19 (4), 2404-2410, 2019
342019
All-photonic quantum teleportation using on-demand solid-state quantum emitters
M Reindl, D Huber, C Schimpf, SFC da Silva, MB Rota, H Huang, ...
Science advances 4 (12), eaau1255, 2018
342018
Reversible Control of In‐Plane Elastic Stress Tensor in Nanomembranes
J Martín‐Sánchez, R Trotta, G Piredda, C Schimpf, G Trevisi, L Seravalli, ...
Advanced Optical Materials 4 (5), 682-687, 2016
302016
High-yield fabrication of entangled photon emitters for hybrid quantum networking using high-temperature droplet epitaxy
F Basso Basset, S Bietti, M Reindl, L Esposito, A Fedorov, D Huber, ...
Nano letters 18 (1), 505-512, 2018
292018
Entanglement swapping with photons generated on demand by a quantum dot
FB Basset, MB Rota, C Schimpf, D Tedeschi, KD Zeuner, SFC da Silva, ...
Physical Review Letters 123 (16), 160501, 2019
232019
Electrically-pumped wavelength-tunable GaAs quantum dots interfaced with rubidium atoms
H Huang, R Trotta, Y Huo, T Lettner, JS Wildmann, J Martín-Sánchez, ...
ACS photonics 4 (4), 868-872, 2017
232017
On-demand semiconductor source of 780-nm single photons with controlled temporal wave packets
L Béguin, JP Jahn, J Wolters, M Reindl, Y Huo, R Trotta, A Rastelli, F Ding, ...
Physical Review B 97 (20), 205304, 2018
132018
Two-photon interference from two blinking quantum emitters
KD Jöns, K Stensson, M Reindl, M Swillo, Y Huo, V Zwiller, A Rastelli, ...
Physical Review B 96 (7), 075430, 2017
132017
Highly indistinguishable single photons from incoherently excited quantum dots
M Reindl, JH Weber, D Huber, C Schimpf, SFC da Silva, SL Portalupi, ...
Physical Review B 100 (15), 155420, 2019
112019
Resolving the temporal evolution of line broadening in single quantum emitters
C Schimpf, M Reindl, P Klenovský, T Fromherz, SFC Da Silva, J Hofer, ...
Optics Express 27 (24), 35290-35307, 2019
92019
Strain-tunable GaAs quantum dot: An on-demand source of nearly-maximally entangled photon pairs
D Huber, M Reindl, SFC da Silva, C Schimpf, J Martin-Sanchez, H Huang, ...
Phys. Rev. Lett. 121, 033902, 2018
72018
Strain-Tunable Single-Photon Source Based on a Quantum Dot–Micropillar System
M Moczała-Dusanowska, Ł Dusanowski, S Gerhardt, YM He, M Reindl, ...
Acs Photonics 6 (8), 2025-2031, 2019
52019
On–demand solid–state single–photon source with 99.99% purity
L Schweickert, KD Jöns, KD Zeuner, SFC da Silva, H Huang, T Lettner, ...
arXiv preprint arXiv:1712.06937, 2017
52017
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