Nonstationary approach scattering theory for supersymmetric Hamiltonians in quantum mechanics and supersymmetry of nuclear interactions

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22 Citations (Scopus)

Abstract

Scattering theory for supersymmetric hamiltonians with an arbitrary number of degrees of freedom is developed in the nonstationary approach. The interpolatinf relations between exact and asymptotic supercharges by means of wave operators are introduced. The general structure of the S-matrix for the supersymmetric hamiltonians and the physical meaning of this structure for nuclear interactions are described.

Original languageEnglish
Pages (from-to)141-144
Number of pages4
JournalPhysics Letters B
Volume181
Issue number1-2
DOIs
Publication statusPublished - 27 Nov 1986

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nuclear interactions
supersymmetry
quantum mechanics
degrees of freedom
operators
matrices
scattering

Scopus subject areas

  • Nuclear and High Energy Physics

Cite this

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title = "Nonstationary approach scattering theory for supersymmetric Hamiltonians in quantum mechanics and supersymmetry of nuclear interactions",
abstract = "Scattering theory for supersymmetric hamiltonians with an arbitrary number of degrees of freedom is developed in the nonstationary approach. The interpolatinf relations between exact and asymptotic supercharges by means of wave operators are introduced. The general structure of the S-matrix for the supersymmetric hamiltonians and the physical meaning of this structure for nuclear interactions are described.",
author = "Andrianov, {A. A.} and Borisov, {N. V.} and Ioffe, {M. V.}",
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AU - Andrianov, A. A.

AU - Borisov, N. V.

AU - Ioffe, M. V.

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N2 - Scattering theory for supersymmetric hamiltonians with an arbitrary number of degrees of freedom is developed in the nonstationary approach. The interpolatinf relations between exact and asymptotic supercharges by means of wave operators are introduced. The general structure of the S-matrix for the supersymmetric hamiltonians and the physical meaning of this structure for nuclear interactions are described.

AB - Scattering theory for supersymmetric hamiltonians with an arbitrary number of degrees of freedom is developed in the nonstationary approach. The interpolatinf relations between exact and asymptotic supercharges by means of wave operators are introduced. The general structure of the S-matrix for the supersymmetric hamiltonians and the physical meaning of this structure for nuclear interactions are described.

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JO - Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics

JF - Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics

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