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Number of items: 16.

Nikiforov, Oleg ; Drzewietzki, Lukas ; Stutz, Sebastian ; Breuer, Stefan (2019):
Passively mode-locked quantum dot laser subject to dual long cavity time-delayed optical feedback.
In: Materials Today: Proceedings, 7 (3), pp. 916-919. ISSN 22147853,
DOI: 10.1016/j.matpr.2018.12.094,
[Article]

Meinecke, Stefan ; Drzewietzki, Lukas ; Weber, Christoph ; Lingnau, Benjamin ; Breuer, Stefan ; Lüdge, Kathy (2019):
Ultra-Short Pulse Generation in a Three Section Tapered Passively Mode-Locked Quantum-Dot Semiconductor Laser.
In: Scientific Reports, 9 (1), ISSN 2045-2322,
DOI: 10.1038/s41598-018-38183-1,
[Article]

Stutz, Sebastian ; Auth, Dominik ; Weber, Christoph ; Drzewietzki, Lukas ; Nikiforov, Oleg ; Rosales, Ricardo ; Walther, Thomas ; Lester, Luke F. ; Breuer, Stefan (2019):
Dynamic Intermode Beat Frequency Control of an Optical Frequency Comb Single Section Quantum Dot Laser by Dual-Cavity Optical Self-Injection.
In: IEEE Photonics Journal, 11 (5), IEEE, ISSN 1943-0647,
DOI: 10.25534/tuprints-00009677,
[Article]

Bardella, Paolo ; Columbo, Lorenzo L. ; Gioannini, Mariangela ; Nikiforov, Oleg ; Walther, Thomas ; Klehr, Andreas ; Knigge, Andrea ; Meinecke, Stefan ; Jaurigue, Lina ; Ludge, Kathy ; Javaloyes, Julien ; Lester, Luke F. ; Weber, Christoph ; Auth, Dominik ; Stutz, Sebastian ; Birkholz, Martin ; Drzewietzki, Lukas ; Breuer, Stefan (2018):
Ultrafast Semiconductor Lasers: Pulse Generation and Stabilization.
pp. 1-2, 2018 IEEE Photonics Conference (IPC), DOI: 10.1109/IPCon.2018.8527183,
[Conference or Workshop Item]

Belyanin, Alexey A. ; Smowton, Peter M. ; Nikiforov, Oleg ; Jaurigue, Lina ; Weber, Christoph ; Drzewietzki, Lukas ; Lüdge, Kathy ; Breuer, Stefan (2017):
Pulse train stability of passively mode-locked semiconductor lasers.
10123, In: Novel In-Plane Semiconductor Lasers XVI, pp. 101230C,
SPIE Photonics West OPTO Conference, San Francisco, USA, ISSN 0277786X,
DOI: 10.1117/12.2251954,
[Conference or Workshop Item]

Rauch, Simon ; Drzewietzki, Lukas ; Klehr, Andreas ; Sacher, Joachim ; Elsäßer, Wolfgang ; Breuer, Stefan (2015):
Experimental Study of the Timing Jitter of a Passively Mode-Locked External-Cavity Semiconductor Laser Subject to Repetition Rate Transitions and Optical Feedback.
In: IEEE Journal of Quantum Electronics, 51 (4), pp. 1-7. ISSN 0018-9197,
DOI: 10.1109/JQE.2015.2402431,
[Article]

Weber, Christoph ; Drzewietzki, Lukas ; Rossetti, Mattia ; Xu, Tianhong ; Bardella, Paolo ; Simos, Hercules ; Mesaritakis, Charis ; Ruiz, Mike ; Krestnikov, Igor ; Livshits, Daniil ; Krakowski, Michel ; Syvridis, Dimitris ; Montrosset, Ivo ; Rafailov, Edik U. ; Elsäßer, Wolfgang ; Breuer, Stefan (2015):
Picosecond pulse amplification up to a peak power of 42 W by a quantum-dot tapered optical amplifier and a mode-locked laser emitting at 126 µm.
In: Optics Letters, 40 (3), pp. 395-398. ISSN 0146-9592,
DOI: 10.1364/OL.40.000395,
[Article]

Drzewietzki, Lukas (2015):
Mode-locked quantum-dot lasers and amplifiers: Ultra-short pulse generation, amplification and stabilization.
Technische Universität Darmstadt,
[Ph.D. Thesis]

Weber, Christoph ; Drzewietzki, Lukas ; Rossetti, Mattia ; Xu, Tianhong ; Bardella, Paolo ; Simos, Hercules ; Mesaritakis, Charis ; Ruiz, Mike ; Krestnikov, Igor ; Livshits, Daniil ; Krakowski, Michel ; Syvridis, Dimitris ; Montrosset, Ivo ; Rafailov, Edik U. ; Elsaesser, Wolfgang ; Breuer, Stefan (2015):
Picosecond pulse amplification up to a peak power of 42 W by a quantum-dot tapered optical amplifier and a mode-locked laser emitting at 1.26 mu m.
In: Optics Letters, 40 (3), pp. 395-398. ISSN 0146-9592,
[Article]

Gioannini, Mariangela ; Dommermuth, Marius ; Drzewietzki, Lukas ; Krestnikov, Igor ; Livshits, Daniil ; Krakowski, Michel ; Breuer, Stefan (2014):
Two-state semiconductor laser self-mixing velocimetry exploiting coupled quantum-dot emission-states: experiment, simulation and theory.
In: Optics Express, 22 (19), pp. 23402-23414. ISSN 1094-4087,
DOI: 10.1364/OE.22.023402,
[Article]

Leonhaeuser-Rein, Britta ; Drzewietzki, Lukas ; Schad, Florian ; Elsaesser, Wolfgang (2013):
Investigations of mode beat frequencies of external cavity semiconductor lasers.
In: Applied Physics B-Lasers and Optics, 113, pp. 215-220. [Article]

Breuer, Stefan ; Rossetti, Mattia ; Drzewietzki, Lukas ; Montrosset, Ivo ; Krakowski, Michel ; Hopkinson, Mark ; Elsäßer, Wolfgang (2013):
Dual-State Absorber-Photocurrent Characteristics and Bistability of Two-Section Quantum-Dot Lasers.
In: IEEE Journal of Selected Topics in Quantum Electronics, 19 (5), p. 1901609. ISSN 1077-260X,
DOI: 10.1109/JSTQE.2013.2255264,
[Article]

Drzewietzki, Lukas ; Breuer, Stefan ; Elsäßer, Wolfgang (2013):
Timing jitter reduction of passively mode-locked semiconductor lasers by self- and external-injection: Numerical description and experiments.
In: Optics Express, 21 (13), pp. 16142-16161. ISSN 1094-4087,
DOI: 10.1364/OE.21.016142,
[Article]

Breuer, Stefan ; Rossetti, Mattia ; Drzewietzki, Lukas ; Bardella, Paolo ; Montrosset, Ivo ; Elsasser, Wolfgang (2011):
Joint Experimental and Theoretical Investigations of Two-State Mode Locking in a Strongly Chirped Reverse-Biased Monolithic Quantum Dot Laser.
In: IEEE Journal of Quantum Electronics, 47 (10), pp. 1320-1329. ISSN 0018-9197,
DOI: 10.1109/JQE.2011.2165834,
[Article]

Drzewietzki, Lukas ; Thè, George A.P. ; Gioannini, Mariangela ; Breuer, Stefan ; Montrosset, Ivo ; Elsäßer, Wolfgang ; Hopkinson, Mark ; Krakowski, Michel (2010):
Theoretical and experimental investigations of the temperature dependent continuous wave lasing characteristics and the switch-on dynamics of an InAs/InGaAs quantum-dot semiconductor laser.
In: Optics Communications, 283 (24), pp. 5092-5098. ISSN 00304018,
DOI: 10.1016/j.optcom.2010.07.013,
[Article]

Breuer, Stefan ; Rossetti, Mattia ; Elsaesser, Wolfgang ; Drzewietzki, Lukas ; Bardella, Paolo ; Montrosset, Ivo ; Krakowski, Michel ; Hopkinson, Mark (2010):
Reverse-emission-state-transition mode locking of a two-section InAs/InGaAs quantum dot laser.
In: Applied Physics Letters, 97, [Article]

This list was generated on Tue Jan 18 04:39:58 2022 CET.