Project detail

Simulation of advanced photonic waveguide structures using eigenmode expansion techniques

Duration: 01.04.2014 — 30.09.2016

Funding resources

Ministerstvo školství, mládeže a tělovýchovy ČR - COST CZ (2011-2017)

- whole funder (2014-04-01 - 2016-09-30)

On the project

Výzkum a realizace výkonných numerických metod používajících rozklad do vlastních modů pro modelování fotonických vlnovodných struktur. Simulace a optimalizace struktur studovaných v rámci akce MP1204.

Description in English
Research and development of efficient numerical techniques based on eigenmode expansion for simulation photonic waveguide structures. Simulation and optimization of devices investigated in the Action MP1204.

Keywords
fotonické vlnovodné struktury; vlastní mody

Key words in English
photonic modeling; eigenmode expansion; photonic crystals; sub-wavelength diffraction grating

Mark

LD14008

Default language

Czech

People responsible

Petráček Jiří, prof. RNDr., Dr. - principal person responsible

Units

Institute of Physical Engineering
- beneficiary (2014-04-01 - 2016-09-30)

Results

RICHTER, I.; KWIECIEN, P.; FIALA, J.; PETRÁČEK, J.; EKSIOGLU ÖZOK, Y.; KUZMIAK, V.; ČTYROKÝ, J. Physics and advanced simulations of photonic and plasmonic structures. In Proc. 16th Int. Conference on Transparent Optical Networks ICTON 2014. International Conference on Transparent Optical Networks. 2014. p. Tu.D5.3-1 (Tu.D5.3-9 p.)ISBN: 978-1-4799-5601-2. ISSN: 2162-7339.
Detail

PETRÁČEK, J. Simulation of Kerr-nonlinear waveguide structures by an eigenmode expansion method. In Proc. 14th International Conference on Numerical Simulation of Optoelectronic Devices, NUSOD 2014. Proceedings of the International Conference on Numerical Simulation of Optoelectronic Devices, NUSOD. 2014. p. 53-54. ISBN: 9781479936823. ISSN: 2158-3234.
Detail

PETRÁČEK, J.; KWIECIEN, P.; RICHTER, I.; EKSIOGLU ÖZOK, Y. Analysis of plasmonic slot waveguide couplers in linear and nonlinear regimes. Proc. XXII International Workshop on Optical Waveguide Theory and Numerical Modelling OWTNM 2014. 2014. p. 75-75.
Detail

PETRÁČEK, J. An eigenmode expansion technique for modeling Kerr-nonlinear waveguide structures. 2014. p. 32-32.
Detail

PETRÁČEK, J.; KWIECIEN, P.; RICHTER, I.; EKSIOGLU ÖZOK, Y. Analysis of plasmonic slot waveguide couplers in linear and nonlinear regimes. Proc. CEITEC Annual Conference "Frontiers in material and Life Science". Masarykova univerzita, 2014. p. 195-195. ISBN: 978-80-210-7159-9.
Detail

CETIN , A. E.; DRŠATA, M.; EKSIOGLU ÖZOK, Y.; PETRÁČEK, J. Effect of Lattice Geometry on Optical Transmission through Subwavelength Nanohole Arrays. In 10th International Congress on Advanced Electromagnetic Materials in Microwaves and Optics (METAMATERIALS). 2016. p. 1-3. ISBN: 978-1-5090-1803-1.
Detail

PETRÁČEK, J.; KOŠKA, P.; ČTYROKÝ, J.; KWIECIEN, P.; RICHTER, I. Simulation of Kerr-nonlinear nanophotonic and nanoplasmonic directional couplers. Frontiers in Nanophotonics, CSF Conference, Monte Verità, Aug 30 - Sept 4, 2015. 2015.
Detail

PETRÁČEK, J.; EKSIOGLU ÖZOK, Y.; CHMELÍK, R. An Eigenmode Expansion Method for Rigorous Simulations of Light Scattering From Living Cells. Book of Abstracts, IEEE 3rd Biophotonics Conference. Firenze: IEEE Italy, 2015.
Detail

CETIN , A. E.; DRŠATA, M.; EKSIOGLU ÖZOK, Y.; PETRÁČEK, J. Extraordinary transmission characteristics of subwavelength nanoholes with rectangular lattice. Plasmonics, 2017, vol. 12, no. 3, p. 1-7. ISSN: 1557-1955.
Detail

PETRÁČEK, J. Nonreciprocal switching in nonlinear plasmonic couplers with loss and gain. Optical and Quantum Electronics, 2016, vol. 48, no. 9, p. 446-1 (446-11 p.)ISSN: 0306-8919.
Detail

DRŠATA, M.; CETIN , A. E.; EKSIOGLU ÖZOK, Y.; PETRÁČEK, J. Simulation of Plasmonic Biosensors Based on Subwavelength Nanohole Arrays. Nanoplasm 2016 - New Frontiers in Plasmonics and Nano-Optics. 2016. p. 96-97.
Detail

KOŠKA, P.; PETRÁČEK, J.; KWIECIEN, P.; LUKSCH, J.; RICHTER, I.; ČTYROKÝ, J. Nonlinear nanophotonic and nanoplasmonic directional couplers: comparison of two novel modeling methods. Optical and Quantum Electronics, 2015, vol. 47, no. 9, p. 3201-3212. ISSN: 0306-8919.
Detail