Frédéric GRILLOT
Frédéric GRILLOT
Professor, Institut Polytechnique de Paris & The University of New-Mexico
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Near-field distribution of optical transmission of periodic subwavelength holes in a metal film
L Salomon, F Grillot, AV Zayats, F De Fornel
Physical review letters 86 (6), 1110, 2001
Size influence on the propagation loss induced by sidewall roughness in ultrasmall SOI waveguides
F Grillot, L Vivien, S Laval, D Pascal, E Cassan
IEEE Photonics Technology Letters 16 (7), 1661-1663, 2004
Light injection in SOI microwaveguides using high-efficiency grating couplers
L Vivien, D Pascal, S Lardenois, D Marris-Morini, E Cassan, F Grillot, ...
Journal of Lightwave technology 24 (10), 3810-3815, 2006
Propagation loss in single-mode ultrasmall square silicon-on-insulator optical waveguides
F Grillot, L Vivien, S Laval, E Cassan
Journal of lightwave technology 24 (2), 891, 2006
Gain Compression and Above-Threshold Linewidth Enhancement Factor in 1.3-InAs–GaAs Quantum-Dot Lasers
F Grillot, B Dagens, JG Provost, H Su, LF Lester
IEEE Journal of Quantum Electronics 44 (10), 946-951, 2008
1.3- m Reflection Insensitive InAs/GaAs Quantum Dot Lasers Directly Grown on Silicon
J Duan, H Huang, B Dong, D Jung, JC Norman, JE Bowers, F Grillot
IEEE Photonics Technology Letters 31 (5), 345-348, 2019
Chaotic light at mid-infrared wavelength
L Jumpertz, K Schires, M Carras, M Sciamanna, F Grillot
Light: Science & Applications 5 (6), e16088-e16088, 2016
Measuring the chirp and the linewidth enhancement factor of optoelectronic devices with a Mach–Zehnder interferometer
JG Provost, F Grillot
IEEE Photonics Journal 3 (3), 476-488, 2011
Analysis of the Double Laser Emission Occurring in 1.55-InAs–InP (113)B Quantum-Dot Lasers
K Veselinov, F Grillot, C Cornet, J Even, A Bekiarski, M Gioannini, ...
IEEE Journal of Quantum Electronics 43 (9), 810-816, 2007
Spectral Analysis of 1.55-m InAs–InP(113)B Quantum-Dot Lasers Based on a Multipopulation Rate Equations Model
F Grillot, K Veselinov, M Gioannini, I Montrosset, J Even, R Piron, ...
IEEE Journal of Quantum Electronics 45 (7), 872-878, 2009
Private communication with quantum cascade laser photonic chaos
O Spitz, A Herdt, J Wu, G Maisons, M Carras, CW Wong, W Elsäßer, ...
Nature communications 12 (1), 3327, 2021
Microwave characterization and stabilization of timing jitter in a quantum-dot passively mode-locked laser via external optical feedback
CY Lin, F Grillot, Y Li, R Raghunathan, LF Lester
IEEE Journal of Selected Topics in Quantum Electronics 17 (5), 1311-1317, 2011
Modeling the injection-locked behavior of a quantum dash semiconductor laser
NA Naderi, M Pochet, F Grillot, NB Terry, V Kovanis, LF Lester
IEEE Journal of Selected Topics in Quantum Electronics 15 (3), 563-571, 2009
Impacts of wetting layer and excited state on the modulation response of quantum-dot lasers
C Wang, F Grillot, J Even
IEEE Journal of Quantum Electronics 48 (9), 1144-1150, 2012
Semiconductor quantum dot lasers epitaxially grown on silicon with low linewidth enhancement factor
J Duan, H Huang, D Jung, Z Zhang, J Norman, JE Bowers, F Grillot
Applied Physics Letters 112 (25), 2018
Perspectives on advances in quantum dot lasers and integration with Si photonic integrated circuits
C Shang, Y Wan, J Selvidge, E Hughes, R Herrick, K Mukherjee, J Duan, ...
ACS photonics 8 (9), 2555-2566, 2021
Two-color multi-section quantum dot distributed feedback laser
NA Naderi, F Grillot, K Yang, JB Wright, A Gin, LF Lester
Optics express 18 (26), 27028-27035, 2010
Analysis of the optical feedback dynamics in InAs/GaAs quantum dot lasers directly grown on silicon
H Huang, J Duan, D Jung, AY Liu, Z Zhang, J Norman, JE Bowers, ...
JOSA B 35 (11), 2780-2787, 2018
Free-space communication with directly modulated mid-infrared quantum cascade devices
O Spitz, P Didier, L Durupt, DA Díaz-Thomas, AN Baranov, L Cerutti, ...
IEEE Journal of Selected Topics in Quantum Electronics 28 (1: Semiconductor …, 2021
Enhanced dynamic performance of quantum dot semiconductor lasers operating on the excited state
C Wang, B Lingnau, K Lüdge, J Even, F Grillot
IEEE Journal of quantum electronics 50 (9), 1-9, 2014
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