Numerical modeling of seeded FWM in silicon nitride waveguides for CARS

Research output: Contribution to conferencePosterOther research output

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Abstract

We propose and theoretically investigate a light source for CARS based on seeded four-wave mixing in silicon nitride waveguides. A tuning range (1290-2750 cm-1) is expected via pumping at a wavelength of 1058 nm and the pump power is calculated to be one order of magnitude lower than what was previously reported.
Original languageEnglish
Number of pages1
Publication statusPublished - 19 Apr 2013
Event21st International Workshop on Optical Wave & Waveguide Theory and Numerical Modelling, OWTNM 2013 - University of Twente, Enschede, Netherlands
Duration: 19 Apr 201320 Apr 2013
Conference number: 21
https://www.owtnm-workshop.org/

Conference

Conference21st International Workshop on Optical Wave & Waveguide Theory and Numerical Modelling, OWTNM 2013
Abbreviated titleOWTNM
CountryNetherlands
CityEnschede
Period19/04/1320/04/13
Internet address

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silicon nitrides
four-wave mixing
light sources
pumping
tuning
pumps
waveguides
wavelengths

Cite this

Epping, J. P., Kues, M., van der Slot, P. J. M., Lee, C. J., Fallnich, C., & Boller, K-J. (2013). Numerical modeling of seeded FWM in silicon nitride waveguides for CARS. Poster session presented at 21st International Workshop on Optical Wave & Waveguide Theory and Numerical Modelling, OWTNM 2013, Enschede, Netherlands.
Epping, J.P. ; Kues, M. ; van der Slot, P.J.M. ; Lee, C.J. ; Fallnich, C. ; Boller, K.-J. / Numerical modeling of seeded FWM in silicon nitride waveguides for CARS. Poster session presented at 21st International Workshop on Optical Wave & Waveguide Theory and Numerical Modelling, OWTNM 2013, Enschede, Netherlands.1 p.
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abstract = "We propose and theoretically investigate a light source for CARS based on seeded four-wave mixing in silicon nitride waveguides. A tuning range (1290-2750 cm-1) is expected via pumping at a wavelength of 1058 nm and the pump power is calculated to be one order of magnitude lower than what was previously reported.",
author = "J.P. Epping and M. Kues and {van der Slot}, P.J.M. and C.J. Lee and C. Fallnich and K.-J. Boller",
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Epping, JP, Kues, M, van der Slot, PJM, Lee, CJ, Fallnich, C & Boller, K-J 2013, 'Numerical modeling of seeded FWM in silicon nitride waveguides for CARS' 21st International Workshop on Optical Wave & Waveguide Theory and Numerical Modelling, OWTNM 2013, Enschede, Netherlands, 19/04/13 - 20/04/13, .

Numerical modeling of seeded FWM in silicon nitride waveguides for CARS. / Epping, J.P.; Kues, M.; van der Slot, P.J.M.; Lee, C.J.; Fallnich, C.; Boller, K.-J.

2013. Poster session presented at 21st International Workshop on Optical Wave & Waveguide Theory and Numerical Modelling, OWTNM 2013, Enschede, Netherlands.

Research output: Contribution to conferencePosterOther research output

TY - CONF

T1 - Numerical modeling of seeded FWM in silicon nitride waveguides for CARS

AU - Epping, J.P.

AU - Kues, M.

AU - van der Slot, P.J.M.

AU - Lee, C.J.

AU - Fallnich, C.

AU - Boller, K.-J.

PY - 2013/4/19

Y1 - 2013/4/19

N2 - We propose and theoretically investigate a light source for CARS based on seeded four-wave mixing in silicon nitride waveguides. A tuning range (1290-2750 cm-1) is expected via pumping at a wavelength of 1058 nm and the pump power is calculated to be one order of magnitude lower than what was previously reported.

AB - We propose and theoretically investigate a light source for CARS based on seeded four-wave mixing in silicon nitride waveguides. A tuning range (1290-2750 cm-1) is expected via pumping at a wavelength of 1058 nm and the pump power is calculated to be one order of magnitude lower than what was previously reported.

M3 - Poster

ER -

Epping JP, Kues M, van der Slot PJM, Lee CJ, Fallnich C, Boller K-J. Numerical modeling of seeded FWM in silicon nitride waveguides for CARS. 2013. Poster session presented at 21st International Workshop on Optical Wave & Waveguide Theory and Numerical Modelling, OWTNM 2013, Enschede, Netherlands.