Folgen
Stephan Schneider
Stephan Schneider
Bestätigte E-Mail-Adresse bei tu-dortmund.de - Startseite
Titel
Zitiert von
Zitiert von
Jahr
Ultralong dephasing time in InGaAs quantum dots
P Borri, W Langbein, S Schneider, U Woggon, RL Sellin, D Ouyang, ...
Physical Review Letters 87 (15), 157401, 2001
12212001
Rabi oscillations in the excitonic ground-state transition of InGaAs quantum dots
P Borri, W Langbein, S Schneider, U Woggon, RL Sellin, D Ouyang, ...
Physical Review B 66 (8), 081306, 2002
2702002
Exciton relaxation and dephasing in quantum-dot amplifiers from room to cryogenic temperature
P Borri, W Langbein, S Schneider, U Woggon, RL Sellin, D Ouyang, ...
IEEE Journal of selected topics in quantum electronics 8 (5), 984-991, 2002
1222002
Ultrafast carrier dynamics and dephasing in InAs quantum-dot amplifiers emitting near 1.3-μm-wavelength at room temperature
P Borri, S Schneider, W Langbein, U Woggon, AE Zhukov, VM Ustinov, ...
Applied Physics Letters 79 (16), 2633-2635, 2001
1082001
Ultrafast carrier dynamics in InGaAs quantum dot materials and devices
P Borri, S Schneider, W Langbein, D Bimberg
Journal of Optics A: Pure and Applied Optics 8 (4), S33, 2006
1052006
Excited-state gain dynamics in InGaAs quantum-dot amplifiers
S Schneider, P Borri, W Langbein, U Woggon, RL Sellin, D Ouyang, ...
IEEE photonics technology letters 17 (10), 2014-2016, 2005
952005
Linewidth enhancement factor in InGaAs quantum-dot amplifiers
S Schneider, P Borri, W Langbein, U Woggon, RL Sellin, D Ouyang, ...
IEEE journal of quantum electronics 40 (10), 1423-1429, 2004
952004
Relaxation and dephasing of multiexcitons in semiconductor quantum dots
P Borri, W Langbein, S Schneider, U Woggon, RL Sellin, D Ouyang, ...
Physical review letters 89 (18), 187401, 2002
692002
Self-induced transparency in InGaAs quantum-dot waveguides
S Schneider, P Borri, W Langbein, U Woggon, J Förstner, A Knorr, ...
Applied physics letters 83 (18), 3668-3670, 2003
612003
Reliability of high power laser diodes with external optical feedback
D Bonsendorf, S Schneider, J Meinschien, JW Tomm
High-Power Diode Laser Technology and Applications XIV 9733, 973302, 2016
142016
Coherent Light–Matter Interaction in InGaAs Quantum Dots: Dephasing Time and Optical Rabi Oscillations
P Borri, W Langbein, S Schneider, U Woggon, RL Sellin, D Ouyang, ...
physica status solidi (b) 233 (3), 391-400, 2002
102002
Ultrafast gain recovery dynamics of the excited state in InGaAs quantum dot amplifiers
S Schneider, U Woggon, P Borri, W Langbein, D Ouyang, RL Sellin, ...
(CLEO). Conference on Lasers and Electro-Optics, 2005. 3, 1674-1676, 2005
82005
Power scaling of kW-diode lasers optimized for material processing applications
S Schneider, I Kardosh, M Voß, S Liebl, J Meinschien
High-Power Diode Laser Technology and Applications XIII 9348, 49-57, 2015
62015
Dephasing of biexcitons in InGaAs quantum dots
P Borri, W Langbein, S Schneider, U Woggon, RL Sellin, D Ouyang, ...
physica status solidi (b) 238 (3), 593-600, 2003
42003
Carrier dynamics in electrically pumped semiconductor quantum dot amplifiers
S Schneider
Shaker, 2004
32004
Quantum Dot Devices-Linewidth Enhancement Factor in InGaAs Quantum-Dot Amplifiers
S Schneider, P Borri, W Langbein, U Woggon, RL Sellin, D Ouyang, ...
IEEE Journal of Quantum Electronics 40 (10), 1423-1429, 2004
12004
Temperature‐Dependent Time‐Resolved Four‐Wave Mixing in InGaAs Quantum Dots
P Borri, W Langbein, S Schneider, U Woggon, RL Sellin, D Ouyang, ...
physica status solidi (a) 190 (2), 517-521, 2002
12002
Laservorrichtung zur Erzeugung von Laserstrahlung sowie 3D-Druck-Vorrichtung mit einer derartigen Laservorrichtung
A Krasnaberski, S Schneider
DE Patent 102019126888A8, 2022
2022
Compact and energy efficient IR laser architecture (Conference Presentation)
D Hauschild, S Schneider, A Gruetz
Components and Packaging for Laser Systems VI 11261, 112610X, 2020
2020
High power line generating diode lasers
S Schneider, I Kardosh, M Wirth, M Ihns, T Mitra, V Wirth
High-Power Diode Laser Technology XVI 10514, 217-224, 2018
2018
Das System kann den Vorgang jetzt nicht ausführen. Versuchen Sie es später erneut.
Artikel 1–20