articleTop 10% cited
Nonlinear optical pulse propagation simulation: From Maxwell’s to unidirectional equations
Physical Review E · 2004 · Vol. 70(3) · pp. 036604–036604
Miroslav Kolesik✉(University of Arizona)Jerome V. Moloney(University of Arizona)
Abstract
Spatial- and time-domain versions of the unidirectional pulse propagation equation (UPPE) are derived and compared from the point of view of their practical application in simulations of nonlinear optical pulse dynamics. A modification of the UPPE suitable for ultrathin optical waveguides, such as submicron silica wires, is also presented. We show in detail how various, previously published propagation equations follow from the UPPE in a unified way that clearly elucidates their underlying approximations and areas of applicability.
Advanced Fiber Laser TechnologiesPhotonic and Optical DevicesPhotonic Crystal and Fiber OpticsPulse (music)Nonlinear systemMaxwell's equationsPoint (geometry)Time domainDomain (mathematical analysis)PhysicsNonlinear opticalNonlinear opticsFinite-difference time-domain method
Funding
- Air Force Office of Scientific Research
Citations
585
FWCI
4.23
field-weighted impact
References
54
Percentile
95%
vs. same field & year
Citations per year
Cited by
Femtosecond filamentation in transparent media
Physics Reports · 2007 · 2,774 citations
References
Self-channeling of high-peak-power femtosecond laser pulses in air
Optics Letters · 1995 · 1,303 citations
Filamentation of ultrashort pulse laser beams resulting from their propagation over long distances in air
Physics of Plasmas · 1999 · 322 citations
Laser-induced plasma formation in water at nanosecond to femtosecond time scales: calculation of thresholds, absorption coefficients, and energy density
IEEE Journal of Quantum Electronics · 1999 · 594 citations
Citation Network
How this paper connects to the literature. Drag to explore, click any node to open that paper.
