Nonlocal transformation of the internal quantum particle structure

The analysis of the integral wave equation, having path integral kernel, has resulted, that collapse phenomenon is based on the nonlocal transformation of the internal structure of a quantum particle, considering in the form of the matter fields collection. This nonlocality allows to escape the cont...

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Main Author: Alexey Yu. Samarin
Format: Article
Language:English
Published: Samara State Technical University 2016-09-01
Series:Vestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki
Subjects:
Online Access:http://mi.mathnet.ru/eng/vsgtu1484
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spelling doaj-94bd57af7447471197df08b129c9c7a62020-11-24T23:51:21ZengSamara State Technical UniversityVestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki1991-86152310-70812016-09-0120342345610.14498/vsgtu1484Nonlocal transformation of the internal quantum particle structureAlexey Yu. Samarin0Samara State Technical University, Samara, 443100, Russian FederationThe analysis of the integral wave equation, having path integral kernel, has resulted, that collapse phenomenon is based on the nonlocal transformation of the internal structure of a quantum particle, considering in the form of the matter fields collection. This nonlocality allows to escape the contradiction between the reduction quantum mechanics postulate and special relativity. It is shown, that the wave function transformation, corresponding to von Neumann's reduction, has the deterministic nature and the quantum mechanics stochasticity is a consequence of a macroscopic measurer presence in the measuring process. Besides it is demonstrated, that the decogerence phenomenon has the same mechanism of the wave function transformation. EPR-type experiment is described in detail and the possibility of the faster-then light communication is proved, as well the possible rules of thumb of this communication are proposed. http://mi.mathnet.ru/eng/vsgtu1484path integralwave function collapsequantum entanglementEPR paradoxmeasurement theorydecogerencefaster-then-light communication
collection DOAJ
language English
format Article
sources DOAJ
author Alexey Yu. Samarin
spellingShingle Alexey Yu. Samarin
Nonlocal transformation of the internal quantum particle structure
Vestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki
path integral
wave function collapse
quantum entanglement
EPR paradox
measurement theory
decogerence
faster-then-light communication
author_facet Alexey Yu. Samarin
author_sort Alexey Yu. Samarin
title Nonlocal transformation of the internal quantum particle structure
title_short Nonlocal transformation of the internal quantum particle structure
title_full Nonlocal transformation of the internal quantum particle structure
title_fullStr Nonlocal transformation of the internal quantum particle structure
title_full_unstemmed Nonlocal transformation of the internal quantum particle structure
title_sort nonlocal transformation of the internal quantum particle structure
publisher Samara State Technical University
series Vestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki
issn 1991-8615
2310-7081
publishDate 2016-09-01
description The analysis of the integral wave equation, having path integral kernel, has resulted, that collapse phenomenon is based on the nonlocal transformation of the internal structure of a quantum particle, considering in the form of the matter fields collection. This nonlocality allows to escape the contradiction between the reduction quantum mechanics postulate and special relativity. It is shown, that the wave function transformation, corresponding to von Neumann's reduction, has the deterministic nature and the quantum mechanics stochasticity is a consequence of a macroscopic measurer presence in the measuring process. Besides it is demonstrated, that the decogerence phenomenon has the same mechanism of the wave function transformation. EPR-type experiment is described in detail and the possibility of the faster-then light communication is proved, as well the possible rules of thumb of this communication are proposed.
topic path integral
wave function collapse
quantum entanglement
EPR paradox
measurement theory
decogerence
faster-then-light communication
url http://mi.mathnet.ru/eng/vsgtu1484
work_keys_str_mv AT alexeyyusamarin nonlocaltransformationoftheinternalquantumparticlestructure
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