Novel solitons in parametric amplifiers and atom lasers


Autoria(s): Drummond, P. D.; Kheruntsyan, K.; He, H.
Data(s)

01/01/1999

Resumo

We review recent developments in quantum and classical soliton theory, leading to the possibility of observing both classical and quantum parametric solitons in higher-dimensional environments. In particular, we consider the theory of three bosonic fields interacting via both parametric (cubic) and quartic couplings. In the case of photonic fields in a nonlinear optical medium this corresponds to the process of sum frequency generation (via chi((2)) nonlinearity) modified by the chi((3)) nonlinearity. Potential applications include an ultrafast photonic AND-gate. The simplest quantum solitons or energy eigenstates (bound-state solutions) of the interacting field Hamiltonian are obtained exactly in three space dimensions. They have a point-like structure-even though the corresponding classical theory is nonsingular. We show that the solutions can be regularized with the imposition of a momentum cut-off on the nonlinear couplings. The case of three-dimensional matter-wave solitons in coupled atomic/molecular Bose-Einstein condensates is discussed.

Identificador

http://espace.library.uq.edu.au/view/UQ:35814

Idioma(s)

eng

Publicador

IOP Publishing LTD

Palavras-Chave #Optics #Physics, Applied #Nonlinear Optics #Atom Optics #Classical Parametric Solitons #Spatio-temporal #Two And Three Dimensional #Optical Logic Gates #Quantum Solitons #Atomic And Molecular Bose-einstein Condensates #Bose-einstein Condensation #Solitary-wave Solutions #Quantum-field-theory #Stewartson-i System #Quadratic Nonlinearity #2nd-order Nonlinearities #Optical Solitons #Feshbach Resonances #Photon Number #Bound-states #C1 #780102 Physical sciences #240402 Quantum Optics and Lasers
Tipo

Journal Article