Optical Fiber Communication 1986
DOI: 10.1364/ofc.1986.wg7
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Stimulated Raman conversion of multisoliton pulses in silica fibers

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Cited by 62 publications
(92 citation statements)
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“…This oscillation induces THz generation, where the generated frequency is exactly Ω THz = 93GHz for a pulse with superbroad spectrum △k z ≈ k 0 with carryier wavelength 800 nm. Physically, one dimensional Schrödinger solitons in fibers appear as a balance between the Kerr nonlinearity and the negative dispersion (22)(23)(24). On the other hand, if we try to find 2D+1 and spatio-temporal solitons in Kerr media, the numerical and the real experiments demonstrate that there is no balance between the plane wave paraxial diffraction -dispersion and the Kerr nonlinearity.…”
Section: Introductionmentioning
confidence: 99%
“…This oscillation induces THz generation, where the generated frequency is exactly Ω THz = 93GHz for a pulse with superbroad spectrum △k z ≈ k 0 with carryier wavelength 800 nm. Physically, one dimensional Schrödinger solitons in fibers appear as a balance between the Kerr nonlinearity and the negative dispersion (22)(23)(24). On the other hand, if we try to find 2D+1 and spatio-temporal solitons in Kerr media, the numerical and the real experiments demonstrate that there is no balance between the plane wave paraxial diffraction -dispersion and the Kerr nonlinearity.…”
Section: Introductionmentioning
confidence: 99%
“…For soliton compression in the NLSE Mollenauer et al [12] first studied the compression for 1 < N Kerr < 15. Based on this Dianov et al [14] showed the following empirical scaling law for the optimal compression length…”
Section: B Scaling Laws For Compression Parametersmentioning
confidence: 98%
“…[14]. Finally, the pulse quality is defined as the fluence in a sech 2 -fit to the central spike relative to the input fluence Q c ≡ Φ 1,sech−fit /Φ 1,in , which is equivalent to taking Q c = I 1 /I 1,in f c .…”
Section: B Scaling Laws For Compression Parametersmentioning
confidence: 99%
“…The Raman self-frequency redshift, first observed in conventional optical fibers [1][2][3], can continuously downshift the central frequency of a single pulse during propagation. With the invention of solid-silica-core photonic crystal fibers (PCFs) [4,5], this process has been demonstrated and extensively exploited in attaining a broad supercontinuum [6].…”
mentioning
confidence: 99%