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Uspekhi Fizicheskikh Nauk, 1996, Volume 166, Number 5, Pages 459–478
DOI: https://doi.org/10.3367/UFNr.0166.199605c.0459
(Mi ufn1184)
 

This article is cited in 40 scientific papers (total in 40 papers)

TO THE 40TH ANNIVERSARY OF THE PROKHOROV GENERAL PHYSICS INSTITUTE, RUSSIAN ACADEMY OF SCIENCES

Quantum cosmology and physics of transitions with a change of the spacetime signature

B. L. Altshuler, A. O. Barvinsky

P. N. Lebedev Physical Institute, Russian Academy of Sciences, Moscow
Abstract: This paper examines elements of the general theory of transitions with changing spacetime signature in quantum gravity and cosmology as suggested in a pioneer work of A D Sakharov. Unlike the conventional formal method for functional integration, this approach uses as the starting point the Dirac—Wheeler—de Witt operator quantization and its reduction to quantization in Arnowitt—Deser—Misner variables. It has been demonstrated that motivation to consider Euclidean—Lorentzian transitions consists in global ambiguity of physical reduction on the phase space of the theory (a gravitational analog of the problem of Gribov's copies). This ambiguity in particular results in the indefinite sign of the physical inner product of quantum states and leads to the concept of third quantization. An alternative approach is quantization in the York gauge and in special variables of conformal superspace. This quantization is likely to provide a global solution of the ambiguity problem, but the problems of Euclidean—Lorentzian transitions arise in this formalism in the language of complexification of a conformal space of the Wick-rotation type for the time variable in the Klein—Gordon equation. The problem of origin of the early Universe via gravitational tunneling in Hartle—Hawking and Vilenkin quantum states is considered to illustrate applications of the general theory. The mechanism is described by which loop effects generate the normalizable distribution function for the ensemble of chaotic inflationary universes. In a model with a large non-minimal coupling constant for the scalar inflation, this mechanism gives rise to a sharp probability peak at sub-Planckian values for the Hubble constant which is in good agreement with the contemporary observational status of the cosmological inflation theory.
Received: April 1, 1996
English version:
Physics–Uspekhi, 1996, Volume 39, Issue 5, Pages 429–459
DOI: https://doi.org/10.1070/PU1996v039n05ABEH000144
Bibliographic databases:
Document Type: Article
PACS: 0.4.60.Ds, 98.80.Bp, 98.80.Cq, 98.80.Hw
Language: Russian


Citation: B. L. Altshuler, A. O. Barvinsky, “Quantum cosmology and physics of transitions with a change of the spacetime signature”, UFN, 166:5 (1996), 459–478; Phys. Usp., 39:5 (1996), 429–459
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  • https://www.mathnet.ru/eng/ufn/v166/i5/p459
  • This publication is cited in the following 40 articles:
    1. Justin C. Feng, Shinji Mukohyama, Sante Carloni, “Singularity at the demise of a black hole”, Phys. Rev. D, 109:2 (2024)  crossref
    2. Asher Yahalom, “The Primordial Particle Accelerator of the Cosmos”, Universe, 8:11 (2022), 594  crossref
    3. S. Bondarenko, M. A. Zubkov, “Riemann–Cartan gravity with dynamical signature”, JETP Letters, 116:1 (2022), 54–60  mathnet  mathnet  crossref  crossref
    4. Tatyana P. Shestakova, “The Birth of the Universe as a Result of the Change of the Metric Signature”, Physics, 4:1 (2022), 160  crossref
    5. Sergey Bondarenko, “Dynamical Signature: Complex Manifolds, Gauge Fields and Non-Flat Tangent Space”, Universe, 8:10 (2022), 497  crossref
    6. B. L. Altshuler, “Andrei Sakharov's research work and modern physics”, Phys. Usp., 64:5 (2021), 427–451  mathnet  crossref  crossref  adsnasa  isi  elib
    7. Lasukov V.V., Lasukova V T., Abdrashitova M.O., “Quantum Solutions in Relativistic Classical Mechanics”, Russ. Phys. J., 64:5 (2021), 924–930  crossref  isi
    8. Lasukov V.V., Lasukova V T., Abdrashitova M.O., “Relativistic Exotic Atom of Coulomb Type”, Russ. Phys. J., 64:8 (2021), 1536–1541  crossref  isi
    9. Pavlov A.E., “Friedmann Cosmology in Elliptic Functions”, Gravit. Cosmol., 27:4 (2021), 403–408  crossref  isi
    10. Lasukov V.V., Abdrashitova M.O., “Quantum Solutions in Classical Electrodynamics and Its Connection With Geometrodynamics”, Russ. Phys. J., 63:4 (2020), 631–648  crossref  isi
    11. Bouhmadi-Lopez M., Brahma S., Chen Ch.-Yu., Chen P., Yeom D.-h., “Annihilation-to-Nothing: a Quantum Gravitational Boundary Condition For the Schwarzschild Black Hole”, J. Cosmol. Astropart. Phys., 2020, no. 11, 002  crossref  isi
    12. Honda A., Saji K., Teramoto K., “Mixed Type Surfaces With Bounded Gaussian Curvature in Three-Dimensional Lorentzian Manifolds”, Adv. Math., 365 (2020), 107036  crossref  isi
    13. Lasukov V., “Violation of the Dominant Energy Condition in Geometrodynamics”, Symmetry-Basel, 12:3 (2020), 400  crossref  isi
    14. Lasukov V.V., Lasukova T.V., Abdrashitova M.O., “Quantum Dynamics of a “Pulsating Heart””, Russ. Phys. J., 61:9 (2019), 1620–1628  crossref  isi  scopus
    15. Lasukov V.V., Lasukova V T., “Quantum-Mechanical Problem With Periodic Initial Conditions in Classical Physics and Geometrodynamics”, Russ. Phys. J., 62:4 (2019), 632–637  crossref  isi
    16. Lasukov V.V., “Cosmological and Quantum Solutions of the Navier-Stokes Equations”, Russ. Phys. J., 62:5 (2019), 778–793  crossref  isi
    17. Lasukov V.V., Lasukova T.V., Abdrashitova M.O., “Inflationary Regime of the Evolution of the Scale Factor in the Relativistic Theory of Gravitation With a Graviton Mass”, Russ. Phys. J., 61:1 (2018), 109–114  crossref  mathscinet  isi  scopus
    18. Lasukov V.V., Abdrashitova M.O., “Quantum-Field Approach in Classical Physics and Geometrodynamics”, Russ. Phys. J., 61:3 (2018), 566–578  crossref  isi  scopus
    19. N. G. Pavlova, A. O. Remizov, Springer Proceedings in Mathematics & Statistics, 222, Singularities and Foliations. Geometry, Topology and Applications, 2018, 135  crossref
    20. Lasukova T., Lasukov V., Abdrashitova M., “Quantum Mechanics With Geometric Constraints of Friedmann Type”, Open Phys., 15:1 (2017), 551–556  crossref  isi  scopus
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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