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Alternating coordinate-momentum representation for quantum states based on bopp operators for modelling long-distance coherence aspects - MaRDI portal

Alternating coordinate-momentum representation for quantum states based on bopp operators for modelling long-distance coherence aspects (Q1666655)

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scientific article; zbMATH DE number 6927307
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Alternating coordinate-momentum representation for quantum states based on bopp operators for modelling long-distance coherence aspects
scientific article; zbMATH DE number 6927307

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    Alternating coordinate-momentum representation for quantum states based on bopp operators for modelling long-distance coherence aspects (English)
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    27 August 2018
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    Summary: This study presents an alternating coordinate-momentum representation for propagation and transition of associated wave function, based on Bopp operators and on a certain symbolic determinant corresponding to a set of two linear equations with null free terms. It is shown that this alternating representation can justify in a good manner the patterns created through reflection/refraction of waves on nonperfectly smooth interfaces and phase correspondence of diffracted beams without the need of supplementary support functions. Correlations with Lorentz transformation of wave functions by interaction with a certain material medium (the space-time origin of a wave-train being adjusted) are also presented, and supplementary aspects regarding the use of electromagnetic scalar and vector potentials for modelling evolution within this alternating representation are added.
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