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Quantum Inverse Scattering Method for Multicomponent Nonlinear Schroedinger Model of Bosons or Fermions with Repulsive Coupling

机译:具有排斥耦合的玻色子或费米子多组分非线性schroedinger模型的量子反散射方法

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The generalization of quantum inverse scattering method to the study of direct and inverse problem for the multicomponent nonlinear Schroedinger model of bosons or fermions with repulsive coupling is made. Two sets of Yang-Baxter equations are solved to obtain commutation relations between the scattering state operators. The eigenfunctions have been constructed for the infinite number of conserved quantities, and the eigenvalues of the first three conserved quantities, number of particles, momentum and energy are obtained. The global Izergin-Korepin relations and the relations between the quantum Jost functions are derived, and from them, the quantum Gel'fand-Levitan equations are established. Finally, the series expansion for the field operators in terms of the scattering state operators is written out explicitly. 15 refs. (Atomindex citation 17:063346)

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