activity
20122023
most citedSuperfilamentation in air

89 citations · 216 across the 7 of their papers we have counts for

collaborators

7 papers

physics.optics202310 cited

Photonic Snake States in Two-Dimensional Frequency Combs

Salim B. Ivars, Yaroslav V. Kartashov, Pedro Fernández de Córdoba +3

Taming the instabilities inherent to many nonlinear optical phenomena is of paramount importance for modern photonics. In particular, the so-called snake instability is universally…

physics.optics2016

Supercontinuum generation with bright and dark solitons in optical fibers

Carles Milián, Tomy Marest, Alexandre Kudlinski +1

We study numerically and experimentally supercontinuum generation in optical fibers with dark and bright solitons simultaneously contributing into the spectral broadening and dispe…

physics.optics201513 cited

Laser beam self-symmetrization in air in the multifilamentation regime

Carles Milian, Vytautas Jukna, Arnaud Couairon +6

We show experimental and numerical evidence of spontaneous self-symmetrization of focused laser beams experiencing multi-filamentation in air. The symmetrization effect is observed…

physics.optics201477 cited

Generation of long-lived underdense channels using femtosecond filamentation in air

Guillaume Point, Carles Milián, Arnaud Couairon +2

Using femtosecond laser pulses at 800 and 400 nm, we characterize the formation of underdense channels in air generated by laser filamentation at the millijoule energy level by mea…

physics.optics201489 cited

Superfilamentation in air

Guillaume Point, Yohann Brelet, Aurélien Houard +6

The interaction between a large number of laser filaments brought together using weak external focusing leads to the emergence of few filamentary structures reminiscent of standard…

physics.optics201427 cited

Effect of input pulse chirp on nonlinear energy deposition and plasma excitation in water

C. Milián, A. Jarnac, Y. Brelet +4

We analyze numerically and experimentally the effect of the input pulse chirp on the nonlinear energy deposition from J fs-pulses at nm to water. Numerical results are…