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20182022
most citedOptical pulse doublet resulting from the nonlinear splitting of a super-Gaussian pulse

12 citations · 23 across the 9 of their papers we have counts for

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physics.optics2022

Ideal Four Wave Mixing Dynamics in a Nonlinear Schr{ö}dinger Equation Fibre System

Anastasiia Sheveleva, Ugo Andral, Bertrand Kibler +3

Near-ideal four wave mixing dynamics are observed in a nonlinear Schr{ö}dinger equation system using a new experimental technique associated with iterated sequential initial condit…

physics.optics2021

Intelligent breathing soliton generation in ultrafast fibre lasers

Xiuqi Wu, Junsong Peng, Sonia Boscolo +3

Harnessing pulse generation from an ultrafast laser is a challenging task as reaching a specific mode-locked regime generally involves adjusting multiple control parameters, in con…

physics.optics20211 cited

Breather molecular complexes in a passively mode-locked fibre laser

Junsong Peng, Zihan Zhao, Sonia Boscolo +4

Breathing solitons are nonlinear waves in which the energy concentrates in a localized and oscillatory fashion. Similarly to stationary solitons, breathers in dissipative systems c…

physics.optics2020

The temporal analogue of diffractive couplers

Anastasiia Sheveleva, Pierre Colman, Christophe Finot

Based on the space-time duality of light, we numerically demonstrate that temporal dispersion grating couplers can generate from a single pulse an array of replicas of equal amplit…

physics.optics2020

Modelling self-similar parabolic pulses in optical fibres with a neural network

Sonia Boscolo, John M. Dudley, Christophe Finot

We expand our previous analysis of nonlinear pulse shaping in optical fibres using machine learning [Opt. Laser Technol., 131 (2020) 106439] to the case of pulse propagation in the…

physics.optics20208 cited

Nonlinear Compression of Besselon Waves for High Repetition-Rate Subpicosecond Pulses Trains

Anastasiia Sheveleva, Christophe Finot

We theoretically and experimentally demonstrate the generation of high-quality low duty-cycle pulse trains at repetition rates of 28 GHz, 56 GHz and 112 GHz. Starting from a contin…