Detailed numerical and experimental studies of propagation of 110 fs laser pulses at 800 am in small-core photonic crystal fibers (gamma = 100 W (1) km(-1)) reveal that pulse breakup occurs in two distinct regimes defined by the input power. At low peak power (soliton order N <= g7) higher-order soliton fission occurs: individual solitons being ejected from the input pulse one after the other and are at-ranged in wavelength and in time by peak power. At higher levels of peak power (N>8), pulse breakup results in ejection of bound soliton pairs and the formation of single solitons that collide during propagation. (C) 2008 Optical Society of Americ
Redshifted solitonic resonant radiation (RR) is a fascinating phase-matching phenomenon that occurs ...
A soliton explosion is an instability whereby a dissipative soliton undergoes a sudden structural co...
We investigate femtosecond pulse propagation in photonic crystal fiber, reporting the generation of ...
Detailed numerical and experimental studies of propagation of 110 fs laser pulses at 800 am in small...
We demonstrate experimentally the formation and stable propagation of bound soliton pairs in a highl...
We use broadband frequency-resolved optical gating (FROG) and cross-correlation FROG (XFROG) techniq...
We investigate experimentally the soliton pattern formation in passively modelocked fiber lasers. Un...
High energy, ultra-short multimode soliton pulse fission is observed and numerically studied in mult...
We describe an experiment in which a train of femtosecond pulses is coupled into a photonic crystal ...
We identify a novel regime of soliton-plasma interactions in which high-intensity ultrashort pulses ...
We present a review of our recent research on the use of photonic crystal fibers (PCFs) to manipulat...
High energy, ultra-short multimode soliton pulse fission is observed and numerically studied in mult...
We show that the group-velocity-led optical event horizon (OEH) in optical fibers provides a conveni...
We study the properties of a soliton crystal, a bound state of several optical pulses that propagate...
Soliton fusion is a fascinating and delicate phenomenon that manifests itself in optical fibers in c...
Redshifted solitonic resonant radiation (RR) is a fascinating phase-matching phenomenon that occurs ...
A soliton explosion is an instability whereby a dissipative soliton undergoes a sudden structural co...
We investigate femtosecond pulse propagation in photonic crystal fiber, reporting the generation of ...
Detailed numerical and experimental studies of propagation of 110 fs laser pulses at 800 am in small...
We demonstrate experimentally the formation and stable propagation of bound soliton pairs in a highl...
We use broadband frequency-resolved optical gating (FROG) and cross-correlation FROG (XFROG) techniq...
We investigate experimentally the soliton pattern formation in passively modelocked fiber lasers. Un...
High energy, ultra-short multimode soliton pulse fission is observed and numerically studied in mult...
We describe an experiment in which a train of femtosecond pulses is coupled into a photonic crystal ...
We identify a novel regime of soliton-plasma interactions in which high-intensity ultrashort pulses ...
We present a review of our recent research on the use of photonic crystal fibers (PCFs) to manipulat...
High energy, ultra-short multimode soliton pulse fission is observed and numerically studied in mult...
We show that the group-velocity-led optical event horizon (OEH) in optical fibers provides a conveni...
We study the properties of a soliton crystal, a bound state of several optical pulses that propagate...
Soliton fusion is a fascinating and delicate phenomenon that manifests itself in optical fibers in c...
Redshifted solitonic resonant radiation (RR) is a fascinating phase-matching phenomenon that occurs ...
A soliton explosion is an instability whereby a dissipative soliton undergoes a sudden structural co...
We investigate femtosecond pulse propagation in photonic crystal fiber, reporting the generation of ...