Faculty profile
Martin Rochette
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Research
Latest papers
From signal processing of telecommunication signals to high pulse energy lasers: the Mamyshev regenerator case.
Nanophotonics (Berlin, Germany) · 2025 · senior author
Passively synchronized Q-switched and mode-locked dual-band Tm3+:ZBLAN fiber lasers using a common graphene saturable absorber.
Scientific reports · 2016
Broadband supercontinuum generation in As2Se3 chalcogenide wires by avoiding the two-photon absorption effects.
Optics letters · 2013 · senior author
Latest funding
- $150,000
Optical characterization system for photonics applications in the wavelength range of 1000-5600 nm
NSERC · 2025 · Principal investigator
- $99,000
Innovative Designs of Optical Fiber Components, Devices, and Sources Compatible with the Mid-Infrared
NSERC · 2022 · Principal investigator
- $144,000
High power fiber lasers for industrial applications
NSERC · 2018 · Principal investigator
13 publications.
From signal processing of telecommunication signals to high pulse energy lasers: the Mamyshev regenerator case.
Finot C, Rochette M
Passively synchronized Q-switched and mode-locked dual-band Tm3+:ZBLAN fiber lasers using a common graphene saturable absorber.
Jia C, Shastri BJ, Abdukerim N, Rochette M, Prucnal PR, Saad M, Chen LR
Broadband supercontinuum generation in As2Se3 chalcogenide wires by avoiding the two-photon absorption effects.
Al-kadry A, Baker C, El Amraoui M, Messaddeq Y, Rochette M
Raman-induced noiselike pulses in a highly nonlinear and dispersive all-fiber ring laser.
North T, Rochette M
Raman lasing in a chalcogenide microwire-based Fabry-Perot cavity.
Ahmad R, Rochette M
Broadband self-pulsating fiber laser based on soliton self-frequency shift and regenerative self-phase modulation.
North T, Rochette M
Chalcogenide optical parametric oscillator.
Ahmad R, Rochette M
High efficiency and ultra broadband optical parametric four-wave mixing in chalcogenide-PMMA hybrid microwires.
Ahmad R, Rochette M
Fabrication and characterization of a pulsed fiber ring laser based on As2S3.
North T, Rochette M
Fabrication of Bragg gratings in subwavelength diameter As2Se3 chalcogenide wires.
Ahmad R, Rochette M, Baker C
Optical characterization system for photonics applications in the wavelength range of 1000-5600 nm
Principal investigators: Rochette, Martin
Keywords: photonics; mid infrared; component characterization
Innovative Designs of Optical Fiber Components, Devices, and Sources Compatible with the Mid-Infrared
Principal investigators: Rochette, Martin
Keywords: photonics; nonlinear optics; gain medium; laser physics; supercontinuum generation; chalcogenide glasses; fluoride glasses; wavelength conversion; chemical sensors; spectroscopy
High power fiber lasers for industrial applications
Principal investigators: Rochette, Martin M
Development of supercontinuum optical sources_x000d_ _x000d_
Principal investigators: Rochette, Martin
Optical sources for the 2-12 um spectral band of the mid-infrared
Principal investigators: Rochette, Martin
Research Equipment for Photonics Applications in the Mid-Infrared Wavelength Range of 1.5-3.4 microns
Principal investigators: Rochette, Martin
Optical sources for the 2-12 um spectral band of the mid-infrared
Principal investigators: Rochette, Martin
Low-noise optical fiber amplifier for the C- and L- bands of the communication spectrum
Principal investigators: Rochette, Martin
Improving the output characteristics of laser sources from a nonlinear optics approach
Principal investigators: Rochette, Martin
Mid-infrared optical sources for sensing applications
Principal investigators: Rochette, Martin
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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