Single- and two-photon interference within the simulated photon wave function in coordinate representation

Author:

Davydov A P,Zlydneva T P

Abstract

Abstract The main provisions of the construction of the single-particle wave function of a photon in the coordinate representation are expounded and its application to the description of single-photon interference phenomena is discussed. The connection between the concepts of electromagnetic field strengths used in quantum electrodynamics and the characteristics of wave packets in photon quantum mechanics is substantiated. For illustration, we consider the relationship between the structure of the photon wave function in coordinate representation and the polarization of photon in the formalism of quantum transition amplitudes. The meaning of the concept of linear polarization of a photon in the state of a wave packet is explained. The wave function is constructed in the coordinate representation of the state of two entangled photons at the exit from a nonlinear crystal by modeling the polarization vectors and Gaussian momentum distribution for each of the photons.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference44 articles.

1. The Young’s interference experiment in the light of the single-photon modeling of the laser radiation;Davydov,2016

2. The Modeling of the Young’s interference experiment in terms of single-photon wave function in the coordinate representation;Davydov,2017

3. The interference of electromagnetic waves from the point of view of the photon wave function in the coordinate representation;Davydov;Electromagnetic waves and electronic systems,2018

4. Single-photon light interference in terms of the photon wave function in coordinate representation;Davydov;Actual problems of modern science technology and education,2018

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