Title :
Understanding Soliton Spectral Tunneling as a Spectral Coupling Effect
Author :
Hairun Guo ; Shaofei Wang ; Xianglong Zeng ; Bache, Morten
Author_Institution :
Dept. of Photonics Eng., Tech. Univ. of Denmark, Lyngby, Denmark
Abstract :
Soliton eigenstate is found corresponding to a dispersive phase profile under which the soliton phase changes induced by the dispersion and nonlinearity are instantaneously counterbalanced. Much like a waveguide coupler relying on a spatial refractive index profile that supports mode coupling between channels, here we suggest that the soliton spectral tunneling effect can be understood supported by a spectral phase coupler. The dispersive wave number in the spectral domain must have a coupler-like symmetric profile for soliton spectral tunneling to occur. We show that such a spectral coupler exactly implies phase as well as group-velocity matching between the input soliton and tunneled soliton, namely a soliton phase matching condition. Examples in realistic photonic crystal fibers are also presented.
Keywords :
eigenvalues and eigenfunctions; holey fibres; optical solitons; photonic crystals; tunnelling; coupler-like symmetric profile; dispersive phase profile; dispersive wave number; group velocity matching; photonic crystal fibers; soliton eigenstate; soliton spectral tunneling; spectral coupling effect; spectral domain; spectral phase coupler; Couplers; Couplings; Dispersion; Optical solitons; Optimized production technology; Ultrafast optics; Soliton coupling effect; soliton phase matching condition; ultrafast nonlinear fiber optics;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2013.2279122