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Discovery of the soliton self-frequency shift

Optics Letters · 1986 · Vol. 11(10) · pp. 659–659
F. MitschkeL. F. Mollenauer

Abstract

We describe the experimental discovery of a continuous shift in the optical frequency of a soliton pulse as it travels down the fiber. The effect is caused by a Raman self-pumping of the soliton, by which energy is transferred from the higher to the lower-frequency parts of its spectrum. For 120-fsec pulses, we have observed net frequency shifts as great as 10% of the optical frequency.

Advanced Fiber Laser TechnologiesNonlinear Photonic SystemsLaser-Matter Interactions and ApplicationsFrequency shiftOpticsSolitonPhysicsPulse (music)Raman scatteringOptical fiberBlueshiftRaman spectroscopyPulse shaping
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