Erwin Bente
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An introduction to InP-based generic integration technology
M Smit, X Leijtens, H Ambrosius, E Bente, J Van der Tol, B Smalbrugge, ...
Semiconductor Science and Technology 29 (8), 083001, 2014
A generic foundry model for InP-based photonic ICs
M Smit, X Leijtens, E Bente, J van der Tol, H Ambrosius, D Robbins, ...
Optical Fiber Communication Conference, OM3E. 3, 2012
A III-V-on-Si ultra-dense comb laser
Z Wang, K Van Gasse, V Moskalenko, S Latkowski, E Bente, B Kuyken, ...
Light: Science & Applications 6 (5), e16260-e16260, 2017
Microwave photonic integrated circuits for millimeter-wave wireless communications
G Carpintero, K Balakier, Z Yang, RC Guzmán, A Corradi, A Jimenez, ...
Journal of Lightwave Technology 32 (20), 3495-3501, 2014
Extremely small AWG demultiplexer fabricated on InP by using a double-etch process
Y Barbarin, XJM Leijtens, E Bente, CM Louzao, JR Kooiman, MK Smit
IEEE Photonics Technology Letters 16 (11), 2478-2480, 2004
Lasing of wavelength-tunable (1.55 μm region) InAs∕ InGaAsP∕ InP (100) quantum dots grown by metal organic vapor-phase epitaxy
S Anantathanasarn, R Nötzel, PJ Van Veldhoven, FWM Van Otten, ...
Applied Physics Letters 89 (7), 2006
Active transverse mode control and optimisation of an all-solid-state laser using an intracavity adaptive-optic mirror
W Lubeigt, G Valentine, J Girkin, E Bente, D Burns
Optics Express 10 (13), 550-555, 2002
High-average-power (>20-W) Nd:YVO4 lasers mode locked by strain-compensated saturable Bragg reflectors
D Burns, M Hetterich, AI Ferguson, E Bente, MD Dawson, JI Davies, ...
JOSA B 17 (6), 919-926, 2000
Self assembled InAs/InP quantum dots for telecom applications in the 1.55 µm wavelength range: wavelength tuning, stacking, polarization control, and lasing
R Nötzel, S Anantathanasarn, RPJ Van Veldhoven, FWM Van Otten, ...
Japanese journal of applied physics 45 (8S), 6544, 2006
Novel widely tunable monolithically integrated laser source
S Latkowski, A Hänsel, N Bhattacharya, T De Vries, L Augustin, ...
IEEE Photonics Journal 7 (6), 1-9, 2015
Observation of Q-switching and mode-locking in two-section InAs/InP (100) quantum dot lasers around 1.55 µm
MJR Heck, EAJM Bente, B Smalbrugge, YS Oei, MK Smit, ...
Optics Express 15 (25), 16292-16301, 2007
New role for nonlinear dynamics and chaos in integrated semiconductor laser technology
M Yousefi, Y Barbarin, S Beri, E Bente, MK Smit, R Nötzel, D Lenstra
Physical review letters 98 (4), 044101, 2007
InP photonic circuits using generic integration
KA Williams, E Bente, D Heiss, Y Jiao, K Ławniczuk, XJM Leijtens, ...
Photonics Research 3 (5), B60-B68, 2015
Monolithically integrated 2.5 GHz extended cavity mode-locked ring laser with intracavity phase modulators
S Latkowski, V Moskalenko, S Tahvili, L Augustin, M Smit, K Williams, ...
Optics Letters 40 (1), 77-80, 2015
Record bandwidth and sub-picosecond pulses from a monolithically integrated mode-locked quantum well ring laser
V Moskalenko, S Latkowski, S Tahvili, T de Vries, M Smit, E Bente
Optics Express 22 (23), 28865-28874, 2014
Saturable Bragg reflector-based continuous-wave mode locking of Yb: KGd (WO 4) 2 laser
A Major, L Giniūnas, N Langford, AI Ferguson, D Burns, E Bente, ...
Journal of Modern Optics 49 (5-6), 787-793, 2002
Integrated Tunable Quantum-Dot Laser for Optical Coherence Tomography in the 1.7 Wavelength Region
BW Tilma, Y Jiao, J Kotani, B Smalbrugge, HPMM Ambrosius, PJ Thijs, ...
IEEE Journal of Quantum Electronics 48 (2), 87-98, 2011
Investigations of repetition rate stability of a mode-locked quantum dot semiconductor laser in an auxiliary optical fiber cavity
S Breuer, W ElsaBer, JG McInerney, K Yvind, J Pozo, EAJM Bente, ...
IEEE Journal of Quantum Electronics 46 (2), 150-157, 2009
A compact digitally tunable seven-channel ring laser
JH Den Besten, RG Broeke, M Van Geemert, JJM Binsma, ...
IEEE Photonics Technology Letters 14 (6), 753-755, 2002
95 GHz millimeter wave signal generation using an arrayed waveguide grating dual wavelength semiconductor laser
G Carpintero, E Rouvalis, K Ławniczuk, M Fice, CC Renaud, XJM Leijtens, ...
Optics letters 37 (17), 3657-3659, 2012
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