We present the details of our previously formulated model [Saleh et al., Phys. Rev. Lett. 107, 203902 (2011)] that governs pulse propagation in hollow-core photonic crystal fibers filled by an ionizable gas. By using perturbative methods, we find that the photoionization process induces the opposite phenomenon of the well-known Raman self-frequency redshift of solitons in solid-core glass fibers, as was recently experimentally demonstrated [Holzer et al., Phys. Rev. Lett. 107, 203901 (2011)]. This process is only limited by ionization losses, and leads to a constant acceleration of solitons in the time domain with a continuous blueshift in the frequency domain. By applying the Gagnon-Belanger gauge transformation, multipeak "inverted gravit...
We study theoretically the propagation of relatively long pulses with ionizing intensities in a holl...
We study theoretically the propagation of relatively long pulses with ionizing intensities in a holl...
International audienceWe have developed an analytical model based on the perturbation theory to stud...
We present the details of our previously formulated model [Saleh et al., Phys. Rev. Lett. 107, 20390...
We show theoretically that the photoionization process in a hollow-core photonic crystal fiber fille...
We show theoretically that the photoionization process in a hollow-core photonic crystal fiber fille...
We show theoretically that the photoionization process in a hollow-core photonic crystal fiber fille...
Based on a recently developed model that is able to describe pulse propagation in gas-filled hollow-...
Gas-filled hollow-core photonic crystal fiber (HC-PCF) is an ideal vehicle for studying nonlinear fi...
We have developed an analytical model based on the perturbation theory to study the optical propagat...
We numerically investigate the effect of ionization on ultrashort high-energy pulses propagating in ...
Soliton dynamics can be used to temporally compress laser pulses to few fs durations in many differe...
We have developed an analytical model based on the perturbation theory to study the optical propagat...
We numerically investigate the effect of ionization on ultrashort high-energy pulses propagating in ...
International audienceWe have developed an analytical model based on the perturbation theory to stud...
We study theoretically the propagation of relatively long pulses with ionizing intensities in a holl...
We study theoretically the propagation of relatively long pulses with ionizing intensities in a holl...
International audienceWe have developed an analytical model based on the perturbation theory to stud...
We present the details of our previously formulated model [Saleh et al., Phys. Rev. Lett. 107, 20390...
We show theoretically that the photoionization process in a hollow-core photonic crystal fiber fille...
We show theoretically that the photoionization process in a hollow-core photonic crystal fiber fille...
We show theoretically that the photoionization process in a hollow-core photonic crystal fiber fille...
Based on a recently developed model that is able to describe pulse propagation in gas-filled hollow-...
Gas-filled hollow-core photonic crystal fiber (HC-PCF) is an ideal vehicle for studying nonlinear fi...
We have developed an analytical model based on the perturbation theory to study the optical propagat...
We numerically investigate the effect of ionization on ultrashort high-energy pulses propagating in ...
Soliton dynamics can be used to temporally compress laser pulses to few fs durations in many differe...
We have developed an analytical model based on the perturbation theory to study the optical propagat...
We numerically investigate the effect of ionization on ultrashort high-energy pulses propagating in ...
International audienceWe have developed an analytical model based on the perturbation theory to stud...
We study theoretically the propagation of relatively long pulses with ionizing intensities in a holl...
We study theoretically the propagation of relatively long pulses with ionizing intensities in a holl...
International audienceWe have developed an analytical model based on the perturbation theory to stud...