ติดตาม
Alexander Schlehahn
Alexander Schlehahn
Osram Opto Semiconductors
ยืนยันอีเมลแล้วที่ tu-berlin.de
ชื่อ
อ้างโดย
อ้างโดย
ปี
A stand-alone fiber-coupled single-photon source
A Schlehahn, S Fischbach, R Schmidt, A Kaganskiy, A Strittmatter, S Rodt, ...
Scientific reports 8 (1), 1340, 2018
1162018
A bright triggered twin-photon source in the solid state
T Heindel, A Thoma, M von Helversen, M Schmidt, A Schlehahn, ...
Nature communications 8 (1), 14870, 2017
942017
Single quantum dot with microlens and 3D-printed micro-objective as integrated bright single-photon source
S Fischbach, A Schlehahn, A Thoma, N Srocka, T Gissibl, S Ristok, ...
ACS photonics 4 (6), 1327-1332, 2017
862017
An electrically driven cavity-enhanced source of indistinguishable photons with 61% overall efficiency
A Schlehahn, A Thoma, P Munnelly, M Kamp, S Höfling, T Heindel, ...
APL Photonics 1 (1), 2016
852016
Single-photon emission at a rate of 143 MHz from a deterministic quantum-dot microlens triggered by a mode-locked vertical-external-cavity surface-emitting laser
A Schlehahn, M Gaafar, M Vaupel, M Gschrey, P Schnauber, JH Schulze, ...
Applied Physics Letters 107 (4), 2015
652015
Operating single quantum emitters with a compact Stirling cryocooler
A Schlehahn, L Krüger, M Gschrey, JH Schulze, S Rodt, A Strittmatter, ...
Review of scientific instruments 86 (1), 2015
432015
Generating single photons at gigahertz modulation-speed using electrically controlled quantum dot microlenses
A Schlehahn, R Schmidt, C Hopfmann, JH Schulze, A Strittmatter, ...
Applied Physics Letters 108 (2), 2016
362016
Mode selection in electrically driven quantum dot microring cavities
A Schlehahn, F Albert, C Schneider, S Höfling, S Reitzenstein, J Wiersig, ...
Optics express 21 (13), 15951-15958, 2013
312013
Advanced in-situ electron-beam lithography for deterministic nanophotonic device processing
A Kaganskiy, M Gschrey, A Schlehahn, R Schmidt, JH Schulze, T Heindel, ...
Review of Scientific Instruments 86 (7), 2015
292015
Bright single-photon sources based on anti-reflection coated deterministic quantum dot microlenses
P Schnauber, A Thoma, CV Heine, A Schlehahn, L Gantz, M Gschrey, ...
Technologies 4 (1), 1, 2015
192015
APL Photon. 1, 011301 (2016)
A Schlehahn, A Thoma, P Munnelly, M Kamp, S Höfling, T Heindel, ...
4
Hybrid microcavity for superminiature single quantum dot based emitters
VA Gaisler, IA Derebezov, AV Gaisler, DV Dmitriev, AI Toropov, ...
Optoelectronics, Instrumentation and Data Processing 53, 178-183, 2017
12017
Гибридный микрорезонатор для сверхминиатюрных излучателей на основе одиночных полупроводниковых квантовых точек
ВА Гайслер, ИА Деребезов, АВ Гайслер, ДВ Дмитриев, АИ Торопов
Автометрия 53 (2), 95-101, 2017
12017
Generating single photons at GHz modulation-speed using electrically controlled quantum dot microlenses
A Schlehahn, R Schmidt, C Hopfmann, JH Schulze, A Strittmatter, ...
arXiv preprint arXiv:1510.07314, 2015
12015
Entwicklung einer autark operierenden Plug-and-Play-Einzelphotonenemittereinheit
A Schlehahn
PQDT-Global, 2018
2018
Subminiature emitters based on a single (111) In (Ga) As quantum dot and hybrid microcavity
VA Gaisler, AV Gaisler, DV Dmitriev, AI Toropov, S Fischbach, ...
Semiconductors 51 (11), 2017
2017
Subminiature emitters based on a single (111) In (Ga) As quantum dot and hybrid microcavity
IA Derebezov, VA Gaisler, AV Gaisler, DV Dmitriev, AI Toropov, ...
Semiconductors 51, 1399-1402, 2017
2017
High-β micropillar lasers with site-controlled quantum dots fabricated via a buried stressor approach
A Kaganskiy, T Heuser, A Schlehahn, F Gericke, X Porte, T Heindel, ...
2017 Conference on Lasers and Electro-Optics Europe & European Quantum …, 2017
2017
Optoelectronic device
A Schlehahn, T Heindel, S Rodt, S Reitzenstein
US Patent 9,599,782, 2017
2017
Room temperature, continuous wave lasing in microcylinder and microring quantum dot laser diodes
F Albert, A Schlehahn, F Langer, T Schlereth, M Pieczarka, S Höfling, ...
ISLC 2012 International Semiconductor Laser Conference, 64-65, 2012
2012
ระบบไม่สามารถดำเนินการได้ในขณะนี้ โปรดลองใหม่อีกครั้งในภายหลัง
บทความ 1–20