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20142026
most cited1 Low power continuous-wave nonlinear optics in silica glass integrated waveguide structures

733 citations

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physics.optics2021733 cited

1 Low power continuous-wave nonlinear optics in silica glass integrated waveguide structures

M. Ferrera, L. Razzari, D. Duchesne +7

Photonic integrated circuits (PICs) are a key component [1] for future telecommunication networks, where demands for greater bandwidth, network flexibility, low energy consumption…

physics.optics2017190 cited

Ultra-low power nonlinear optics in a high Q CMOS compatible integrated micro-ring resonator

M. Ferrera, D. Duchesne, L. Razzari +8

We demonstrate efficient, low power, continuous-wave four-wave mixing in the C-band, using a high index doped silica glass micro ring resonator having a Q-factor of 1.2 million. A…

physics.optics2017421 cited

Parametric gain and wavelength conversion via third order nonlinear optics a CMOS compatible waveguide

A. Pasquazi, M. Peccianti, M. Lamont +4

We demonstrate sub-picosecond wavelength conversion in the C-band via four wave mixing in a 45cm long high index doped silica spiral waveguide. We achieve an on/off conversion effi…

physics.optics2017175 cited

First and second order all-optical integrating functions in a photonic integrated circuit

Marcello Ferrera, Yongwoo Park, Luca Razzari +5

We demonstrate all-optical temporal integration of arbitrary optical waveforms with temporal features as short as ~1.9ps. By using a four-port micro-ring resonator based on CMOS co…

physics.optics2014473 cited

Novel architecture for ultra-stable micro-ring resonator based optical frequency combs

Alessia Pasquazi, Lucia Caspani, Marco Peccianti +8

We report a novel geometry for OPOs based on nonlinear microcavity resonators. This approach relies on a self-locked scheme that enables OPO emission without the need for thermal l…

physics.optics2014442 cited

Ultra-pure RF tone from a micro-ring resonator based optical frequency comb source

Alessia Pasquazi, Marco Peccianti, Brent E. Little +3

We demonstrate a novel mode locked ultrafast laser, based on an integrated high-Q micr-oring resonator. Our scheme exhibits stable operation of two slightly shifted spectral optica…