Analysis of interaction dynamics and rogue wave localization in modulation instability using data-driven dominant balance
Ermolaev, Andrei V.; Mabed, Mehdi; Finot, Christophe; Genty, Goëry; Dudley, John M. (2023)
Ermolaev, Andrei V.
Mabed, Mehdi
Finot, Christophe
Genty, Goëry
Dudley, John M.
2023
Scientific Reports
10462
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202307257300
https://urn.fi/URN:NBN:fi:tuni-202307257300
Kuvaus
Peer reviewed
Tiivistelmä
<p>We analyze the dynamics of modulation instability in optical fiber (or any other nonlinear Schrödinger equation system) using the machine-learning technique of data-driven dominant balance. We aim to automate the identification of which particular physical processes drive propagation in different regimes, a task usually performed using intuition and comparison with asymptotic limits. We first apply the method to interpret known analytic results describing Akhmediev breather, Kuznetsov-Ma, and Peregrine soliton (rogue wave) structures, and show how we can automatically distinguish regions of dominant nonlinear propagation from regions where nonlinearity and dispersion combine to drive the observed spatio-temporal localization. Using numerical simulations, we then apply the technique to the more complex case of noise-driven spontaneous modulation instability, and show that we can readily isolate different regimes of dominant physical interactions, even within the dynamics of chaotic propagation.</p>
Kokoelmat
- TUNICRIS-julkaisut [20161]