articleTop 1% cited
Theory of the soliton self-frequency shift
Optics Letters · 1986 · Vol. 11(10) · pp. 662–662
J. P. Gordon✉(AT&T (United States))
Abstract
Raman effects cause a continuous downshift of the mean frequency of pulses propagating in optical fibers. For solitons in silica fibers, the effect varies roughly with the inverse fourth power of the pulse width. At 1.5-microm wavelength in a fiber with 15 psec/nm/km time-of-flight dispersion, a soliton of 250-fsec duration is predicted to shift by its own spectral width after about l00m of propagation. The theory agrees well with recent measurements.
Advanced Fiber Laser TechnologiesPhotonic Crystal and Fiber OpticsOptical Network TechnologiesOpticsSolitonDispersion (optics)PhysicsWavelengthZero-dispersion wavelengthOptical fiberFrequency shiftRaman scatteringSelf-phase modulation
Citations
1,114
FWCI
15.66
field-weighted impact
References
5
Percentile
100%
vs. same field & year
Citations per year
Cited by
Theoretical description of transient stimulated Raman scattering in optical fibers
IEEE Journal of Quantum Electronics · 1989 · 707 citations
Supercontinuum generation in photonic crystal fiber
Reviews of Modern Physics · 2006 · 4,233 citations
Dark optical solitons: physics and applications
Physics Reports · 1998 · 1,315 citations
References
Discovery of the soliton self-frequency shift
Optics Letters · 1986 · 1,189 citations
Related articles
Anomalous dispersion in photonic crystal fiber
IEEE Photonics Technology Letters · 2000 · 627 citations
Citation Network
How this paper connects to the literature. Drag to explore, click any node to open that paper.
