This paper applies three-wave interaction (TWI)-soliton theory to optical parametric amplification when the signal, idler, and pump wave can all contain TWI solitons. We use an analogy between two different velocity regimes to compare the theory with output from an experimental synchronously pumped optical parametric amplifier. The theory explains the observed inability to compress the intermediate group-velocity wave and 20-fold pulse compression in this experiment. The theory and supporting numerics show that one can effectively control the shape and energy of the optical pulses by shifting the TWI solitons in the pulses. © 1999 The American Physical Society
Three-wave parametric interactions are studied in media exhibiting group-velocity dispersion. Under ...
Resonant three-wave interactions appear in many fields of physics e.g. nonlinear optics, plasma phys...
Resonant three-wave interactions appear in many fields of physics e.g. nonlinear optics, plasma phys...
Using inverse scattering transform theory, we obtain new analytical expressions describing the proce...
Analytical soliton solutions of the nonlinear three-wave-interaction (TWI) equations are generalized...
■.-./■■' ■ Abstract..,:.-■:'.;■...t.;7>r Using the inverse scattering transform solutio...
Parametric three-wave mixing in quadratic nonlinear crystals provides a versatile means of achieving...
We analyze the control of the propagation speed of three wave packets interacting in a medium with q...
International audienceWe analyze the control of the propagation speed of three wave packets interact...
International audienceWe analyze the control of the propagation speed of three wave packets interact...
International audienceWe found a new class of analytic soliton solutions that describe the parametri...
Resonant three-wave interactions appear in many fields of physics e. g. nonlinear optics, plasma phy...
International audienceWe found a new class of analytic soliton solutions that describe the parametri...
Resonant three-wave interactions appear in many fields of physics e. g. nonlinear optics, plasma phy...
Three-wave parametric interactions are studied in media exhibiting group-velocity dispersion. Under ...
Three-wave parametric interactions are studied in media exhibiting group-velocity dispersion. Under ...
Resonant three-wave interactions appear in many fields of physics e.g. nonlinear optics, plasma phys...
Resonant three-wave interactions appear in many fields of physics e.g. nonlinear optics, plasma phys...
Using inverse scattering transform theory, we obtain new analytical expressions describing the proce...
Analytical soliton solutions of the nonlinear three-wave-interaction (TWI) equations are generalized...
■.-./■■' ■ Abstract..,:.-■:'.;■...t.;7>r Using the inverse scattering transform solutio...
Parametric three-wave mixing in quadratic nonlinear crystals provides a versatile means of achieving...
We analyze the control of the propagation speed of three wave packets interacting in a medium with q...
International audienceWe analyze the control of the propagation speed of three wave packets interact...
International audienceWe analyze the control of the propagation speed of three wave packets interact...
International audienceWe found a new class of analytic soliton solutions that describe the parametri...
Resonant three-wave interactions appear in many fields of physics e. g. nonlinear optics, plasma phy...
International audienceWe found a new class of analytic soliton solutions that describe the parametri...
Resonant three-wave interactions appear in many fields of physics e. g. nonlinear optics, plasma phy...
Three-wave parametric interactions are studied in media exhibiting group-velocity dispersion. Under ...
Three-wave parametric interactions are studied in media exhibiting group-velocity dispersion. Under ...
Resonant three-wave interactions appear in many fields of physics e.g. nonlinear optics, plasma phys...
Resonant three-wave interactions appear in many fields of physics e.g. nonlinear optics, plasma phys...