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Edgars Nitiss
Edgars Nitiss
Sensirion AG
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Titel
Zitiert von
Zitiert von
Jahr
Optically reconfigurable quasi-phase-matching in silicon nitride microresonators
E Nitiss, J Hu, A Stroganov, CS Brès
Nature Photonics 16 (2), 134-141, 2022
862022
Formation Rules and Dynamics of Photoinduced χ(2) Gratings in Silicon Nitride Waveguides
E Nitiss, T Liu, D Grassani, M Pfeiffer, TJ Kippenberg, CS Brès
ACS photonics 7 (1), 147-153, 2019
332019
Highly tunable second-harmonic generation in all-optically poled silicon nitride waveguides
E Nitiss, O Yakar, A Stroganov, CS Brès
Optics Letters 45 (7), 1958-1961, 2020
242020
Study of structure–third-order susceptibility relation of indandione derivatives
A Bundulis, E Nitiss, I Mihailovs, J Busenbergs, M Rutkis
The Journal of Physical Chemistry C 120 (48), 27515-27522, 2016
232016
A chip-scale second-harmonic source via self-injection-locked all-optical poling
M Clementi, E Nitiss, J Liu, E Durán-Valdeiglesias, S Belahsene, ...
Light: Science & Applications 12 (1), 296, 2023
222023
All-organic electro-optic waveguide modulator comprising SU-8 and nonlinear optical polymer
E Nitiss, A Tokmakovs, K Pudzs, J Busenbergs, M Rutkis
Optics Express 25 (25), 31036-31044, 2017
222017
Photo-induced cascaded harmonic and comb generation in silicon nitride microresonators
J Hu, E Nitiss, J He, J Liu, O Yakar, W Weng, TJ Kippenberg, CS Brès
Science Advances 8 (50), eadd8252, 2022
212022
Linear electro-optic effect in silicon nitride waveguides enabled by electric-field poling
B Zabelich, E Nitiss, A Stroganov, CS Bres
ACS photonics 9 (10), 3374-3383, 2022
212022
Near perfect two-photon interference out of a down-converter on a silicon photonic chip
R Dalidet, F Mazeas, E Nitiss, O Yakar, A Stroganov, S Tanzilli, L Labonté, ...
Optics Express 30 (7), 11298-11305, 2022
172022
Generalized coherent photogalvanic effect in coherently seeded waveguides
O Yakar, E Nitiss, J Hu, CS Brès
Laser & Photonics Reviews 16 (12), 2200294, 2022
162022
Broadband quasi-phase-matching in dispersion-engineered all-optically poled silicon nitride waveguides
E Nitiss, B Zabelich, O Yakar, J Liu, RN Wang, TJ Kippenberg, CS Brès
Photonics Research 8 (9), 1475-1483, 2020
152020
Difference-frequency generation in optically poled silicon nitride waveguides
E Sahin, B Zabelich, O Yakar, E Nitiss, J Liu, RN Wang, TJ Kippenberg, ...
Nanophotonics 10 (7), 1923-1930, 2021
142021
Stereoselective synthesis and properties of 1, 3-bis (dicyanomethylidene) indane-5-carboxylic acid acceptor fragment containing nonlinear optical chromophores
K Traskovskis, V Kokars, A Tokmakovs, I Mihailovs, E Nitiss, M Petrova, ...
Journal of Materials Chemistry C 4 (22), 5019-5030, 2016
112016
Review and comparison of experimental techniques used for determination of thin film electro‐optic coefficients
E Nitiss, A Bundulis, A Tokmakov, J Busenbergs, E Linina, M Rutkis
physica status solidi (a) 212 (9), 1867-1879, 2015
102015
All-organic waveguide sensor for volatile solvent sensing
E Nitiss, A Bundulis, A Tokmakovs, J Busenbergs, M Rutkis
Photonic Sensors 9, 356-366, 2019
82019
Chromophore Poling in Thin Films of Organic Glasses. 3. Setup for Corona Triode Discharge/Hromoforu Polarizēšana Plānās Organisko Stiklu Kārtiņās 3. Koronas Izlādes Triodes Ierīce
O Vilitis, E Titavs, E Nitiss, M Rutkis
Latvian Journal of Physics and Technical Sciences 50 (1), 66-75, 2013
82013
Evaluation of performance of a hybrid electro-optic directional coupler and a Mach–Zehnder switch
E Nitiss
Journal of Nanophotonics 11 (1), 016013-016013, 2017
72017
Mach–Zehnder interferometer implementation for thermo-optical and Kerr effect study
A Bundulis, E Nitiss, J Busenbergs, M Rutkis
Applied Physics B 124, 1-7, 2018
62018
Electrooptic coefficient measurements by Mach Zehnder interferometric method: application of Abelés matrix formalism for thin film polymeric sample description
E Nitiss, M Rutkis, M Svilans
Optics Communications 286, 357-362, 2013
62013
Silicon nitride electric-field poled microresonator modulator
B Zabelich, C Lafforgue, E Nitiss, A Stroganov, CS Brès
APL Photonics 9 (1), 2024
52024
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