32 citations to https://www.mathnet.ru/rus/tmf6614
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С. А. Пастон, “Связь между квантовыми эффектами в общей теории относительности и в теории вложения”, ТМФ, 185:1 (2015), 162–178 ; S. A. Paston, “Relation between quantum effects in general relativity and embedding theory”, Theoret. and Math. Phys., 185:1 (2015), 1502–1515
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А. А. Шейкин, С. А. Пастон, “Классификация минимальных глобальных вложений для невращающихся черных дыр”, ТМФ, 185:1 (2015), 213–223 ; A. A. Sheikin, S. A. Paston, “Classification of minimum global embeddings for nonrotating black holes”, Theoret. and Math. Phys., 185:1 (2015), 1547–1556
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S. A. Paston, E. N. Semenova, “External time canonical formalism for gravity in terms of embedding theory”, Gravit. Cosmol., 21:3 (2015), 181
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S A Paston, “Hawking into Unruh mapping for embeddings of hyperbolic type”, Class. Quantum Grav., 32:14 (2015), 145009
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Bekenstein J.D., “Can Quantum Gravity Be Exposed in the Laboratory?”, Found. Phys., 44:5 (2014), 452–462
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Sheykin A.A., Paston S.A., “The Approach To Gravity as a Theory of Embedded Surface”, II Russian-Spanish Congress on Particle and Nuclear Physics At All Scales, Astroparticle Physics and Cosmology, AIP Conference Proceedings, 1606, eds. Andrianov A., Espriu D., Andrianov V., Kolevatov S., Amer Inst Physics, 2014, 400–406
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V. M. Khatsymovsky, “Some minisuperspace model for the Faddeev formulation of gravity”, Mod. Phys. Lett. A, 29:27 (2014), 1450141
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Khatsymovsky V.M., “First-Order Representation of the Faddeev Formulation of Gravity”, Class. Quantum Gravity, 30:9 (2013), 095006
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Mielke E.W., “Symmetry Breaking in Topological Quantum Gravity”, Int. J. Mod. Phys. D, 22:5 (2013), 1330009
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Т. А. Болохов, “Алгебраические свойства действия Эйнштейна–Картана”, Вопросы квантовой теории поля и статистической физики. 22, Зап. научн. сем. ПОМИ, 398, ПОМИ, СПб., 2012, 55–63 ; T. A. Bolokhov, “Algebraic properties of the Einstein–Cartan action”, J. Math. Sci. (N. Y.), 192:1 (2013), 31–36