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  4. Generalized Coherent Photogalvanic Effect in Coherently Seeded Waveguides
 
research article

Generalized Coherent Photogalvanic Effect in Coherently Seeded Waveguides

Yakar, Ozan  
•
Nitiss, Edgars  
•
Hu, Jianqi  
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September 14, 2022
Laser & Photonics Reviews

The coherent photogalvanic effect leads to the generation of a current under the absorption interference of coherent beams and allows for the inscription of space-charge gratings leading to a second-order susceptibility (chi((2))). The inscribed grating automatically results in quasi-phase-matching between the interfering beams. Theoretical and experimental studies, considering the degenerate case of second-harmonic generation, show significant conversion efficiency enhancements. However, the link between the theory and experiment is not fully established such that general guidelines and achievable conversion efficiency for a given material platform are still unclear. In this work, the phenomenological model of coherent photogalvanic effect in optical waveguides is theoretically analyzed. This model predicts the existence of non-degenerate sum-frequency generation quasi-phase-matching gratings, which is confirmed experimentally for the first time. Furthermore, the time dynamics of the space-charge grating inscription in coherent photogalvanic process is formulated. Based on the developed theoretical equations, the material parameters governing the process for stoichiometric silicon nitride are extracted. The results obtained provide a basis to compare the performances and potentials of different platforms. This work not only supplements the theory of coherent photogalvanic effect, but also enables us to identify critical parameters and limiting factors for the inscription of chi((2)) gratings.

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Type
research article
DOI
10.1002/lpor.202200294
Web of Science ID

WOS:000853533500001

Author(s)
Yakar, Ozan  
Nitiss, Edgars  
Hu, Jianqi  
Bres, Camille-Sophie  
Date Issued

2022-09-14

Published in
Laser & Photonics Reviews
Article Number

2200294

Subjects

Optics

•

Physics, Applied

•

Physics, Condensed Matter

•

Physics

•

nonlinear optics

•

nanophotonics

•

nonlinear waveguides

•

photogalvanic effect

•

second-order nonlinear effects

•

silicon-nitride

•

2nd-harmonic generation

•

wavelength conversion

•

harmonic-generation

•

optical-fibers

•

photocurrent

•

multiphoton

•

ionization

•

field

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
PHOSL  
Available on Infoscience
September 26, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/190908
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