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Probabilities in the topos approach to branching space-time. / Il'Ichov, L.

в: Journal of Physics: Conference Series, Том 1051, № 1, 012014, 17.07.2018.

Результаты исследований: Научные публикации в периодических изданияхстатья по материалам конференцииРецензирование

Harvard

Il'Ichov, L 2018, 'Probabilities in the topos approach to branching space-time', Journal of Physics: Conference Series, Том. 1051, № 1, 012014. https://doi.org/10.1088/1742-6596/1051/1/012014

APA

Vancouver

Il'Ichov L. Probabilities in the topos approach to branching space-time. Journal of Physics: Conference Series. 2018 июль 17;1051(1):012014. doi: 10.1088/1742-6596/1051/1/012014

Author

Il'Ichov, L. / Probabilities in the topos approach to branching space-time. в: Journal of Physics: Conference Series. 2018 ; Том 1051, № 1.

BibTeX

@article{a90c1b93e7214ea4b1af9a62a5e71a41,
title = "Probabilities in the topos approach to branching space-time",
abstract = "There was previously proposed a topos unified view-point both to relativistic and quantum physics [4-5] on the basis of Belnapian branching space-time [3]. In the context of this approach, to any event of the branching space-time there can be associated a local orthocomplemented lattice (logic) of 'physically reasonable' propositions made by a localized observer. Elements of these local orthologics are special collections of the so-called Belnapian worlds (maximal upward directed subsets of events) which the local event belongs to. In the ordinary quantum setting, the counterpart of any local orthologic is the lattice of closed subspaces of Hilbert space of the observer's environment. The present work suggests a natural scheme of inserting truth probabilities of the 'physically reasonable' propositions into the topos framework. To this end, the concept of Chu spaces is used. The role of hypothesis for the state of environment is played by an element of local 'retro-causal' orthologic. Sufficient condition of functorial character of the law by which Chu space is related to any event is pointed and proved, i.e. a functor is constructed from the branching space-time to the category of all Chu spaces. There presented a theorem on category nature of Bayesian reassessment of hypothesis likelihood made by the local observer.",
author = "L. Il'Ichov",
note = "Publisher Copyright: {\textcopyright} 2018 Published under licence by IOP Publishing Ltd.; 20th International Meeting on Physical Interpretations of Relativity Theory 2017, PIRT 2017 ; Conference date: 03-07-2017 Through 06-07-2017",
year = "2018",
month = jul,
day = "17",
doi = "10.1088/1742-6596/1051/1/012014",
language = "English",
volume = "1051",
journal = "Journal of Physics: Conference Series",
issn = "1742-6588",
publisher = "IOP Publishing Ltd.",
number = "1",

}

RIS

TY - JOUR

T1 - Probabilities in the topos approach to branching space-time

AU - Il'Ichov, L.

N1 - Publisher Copyright: © 2018 Published under licence by IOP Publishing Ltd.

PY - 2018/7/17

Y1 - 2018/7/17

N2 - There was previously proposed a topos unified view-point both to relativistic and quantum physics [4-5] on the basis of Belnapian branching space-time [3]. In the context of this approach, to any event of the branching space-time there can be associated a local orthocomplemented lattice (logic) of 'physically reasonable' propositions made by a localized observer. Elements of these local orthologics are special collections of the so-called Belnapian worlds (maximal upward directed subsets of events) which the local event belongs to. In the ordinary quantum setting, the counterpart of any local orthologic is the lattice of closed subspaces of Hilbert space of the observer's environment. The present work suggests a natural scheme of inserting truth probabilities of the 'physically reasonable' propositions into the topos framework. To this end, the concept of Chu spaces is used. The role of hypothesis for the state of environment is played by an element of local 'retro-causal' orthologic. Sufficient condition of functorial character of the law by which Chu space is related to any event is pointed and proved, i.e. a functor is constructed from the branching space-time to the category of all Chu spaces. There presented a theorem on category nature of Bayesian reassessment of hypothesis likelihood made by the local observer.

AB - There was previously proposed a topos unified view-point both to relativistic and quantum physics [4-5] on the basis of Belnapian branching space-time [3]. In the context of this approach, to any event of the branching space-time there can be associated a local orthocomplemented lattice (logic) of 'physically reasonable' propositions made by a localized observer. Elements of these local orthologics are special collections of the so-called Belnapian worlds (maximal upward directed subsets of events) which the local event belongs to. In the ordinary quantum setting, the counterpart of any local orthologic is the lattice of closed subspaces of Hilbert space of the observer's environment. The present work suggests a natural scheme of inserting truth probabilities of the 'physically reasonable' propositions into the topos framework. To this end, the concept of Chu spaces is used. The role of hypothesis for the state of environment is played by an element of local 'retro-causal' orthologic. Sufficient condition of functorial character of the law by which Chu space is related to any event is pointed and proved, i.e. a functor is constructed from the branching space-time to the category of all Chu spaces. There presented a theorem on category nature of Bayesian reassessment of hypothesis likelihood made by the local observer.

UR - http://www.scopus.com/inward/record.url?scp=85051325354&partnerID=8YFLogxK

U2 - 10.1088/1742-6596/1051/1/012014

DO - 10.1088/1742-6596/1051/1/012014

M3 - Conference article

AN - SCOPUS:85051325354

VL - 1051

JO - Journal of Physics: Conference Series

JF - Journal of Physics: Conference Series

SN - 1742-6588

IS - 1

M1 - 012014

T2 - 20th International Meeting on Physical Interpretations of Relativity Theory 2017, PIRT 2017

Y2 - 3 July 2017 through 6 July 2017

ER -

ID: 16112437