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We discuss emergent gravity in the superplastic crystals.
I. V. Fialkovsky, M. A. Zubkov, arXiv:1905.11097
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F.A. Berezin and M.A. Shubin, in: Colloquia Mathematica Societatis Janos Bolyai (North-Holland, Amsterdam) p. 21, (1972)
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H. Kleinert, ”Gravity as Theory of Defects in a Crystal with Only Second-Gradient Elasticity”. Annalen der Physik. 44 (2) (1987) 117, doi:10.1002/andp.19874990206
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A. D. Sakharov, ”Vacuum quantum fluctuations in curved space and the theory of gravitation,” Dokl.Akad.Nauk SSSR 177,70-71 (1967) [Sov.Phys.Dokl. 12,1040-1041 (1968). AlsoS14, pp. 167-169] Usp. Fiz. Nauk 161,64-66 (1991)
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T. Jacobson, ”Thermodynamics of Spacetime: The Einstein Equation of State”. Physical Review Letters. 75 (7) (1995) 1260–1263, arXiv:gr-qc/9504004, doi:10.1103/PhysRevLett.75.1260
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H. Martel, P.R. Shapiro, S. Weinberg, ”Likely Values of the Cosmological Constant”. The Astrophysical Journal. 492 (1) (1998) 29–40, arXiv:astro-ph/9701099 doi:10.1086/305016
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B. L. G. Bakker, A. I. Veselov, and M. A. Zubkov, Central dominance and the confinement mechanism in gluodynamics , Physics Letters B 471
1999
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R. Schutzhold, “Small cosmological constant from the QCD trace anomaly?,” Phys. Rev. Lett. 89
2002
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G.E. Volovik, The Universe in a Helium Droplet, Clarendon Press, Oxford (2003)
2003
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H. Kleinert and J. Zaanen, World nematic crystal model of gravity explaining the absence of torsion
2004
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B. L. G. Bakker, A. I. Veselov, and M. A. Zubkov, Standard Model with the additional Z6 symmetry on the lattice , Physics Letters B 620
2005
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2010
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2010
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2010
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2011
Cited alongside, same era.
M. A. Zubkov and Z. V. Khaidukov, “Topology of the momentum space, Wigner transformations, and a chiral anomaly in lattice models,” JETP Lett. 106
2017
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M. N. Chernodub and M. A. Zubkov, Scale magnetic effect in quantum electrodynamics and the Wigner-Weyl formalism , Physical Review D 96
2017
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G. E. Volovik and M. A. Zubkov, Standard Model as the topological material , New Journal of Physics 19
2017
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M. A. Zubkov and Z. V. Khaidukov, Topology of the momentum space, Wigner transformations, and a chiral anomaly in lattice models , JETP Letters 106
2017
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2018
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2011
Cited alongside, same era.
J. Martin, ”Everything you always wanted to know about the cosmological constant problem (but were afraid to ask),” Comptes Rendus Physique 13.6-7 (2012) 566-665
2012
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2012
Cited alongside, same era.
2012
Cited alongside, same era.
M. A. Zubkov and G. E. Volovik, Momentum space topological invariants for the 4D relativistic vacua with mass gap , Nuclear Physics B 860
2012
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2013
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G. E. Volovik and M. A. Zubkov, Nambu sum rule in the NJL Models: from superfluidity to top quark condensation , JETP Letters 97
2013
Cited alongside, same era.
M. I. Katsnelson, G. E. Volovik, and M. A. Zubkov, Euler–Heisenberg effective action and magnetoelectric effect in multilayer graphene , Annals of Physics 331
2013
Cited alongside, same era.
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
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Z. V. Khaidukov and M. A. Zubkov, “Chiral torsional effect,” JETP Lett. 108
2018
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M. A. Zubkov, Momentum space topology of QCD , Annals of Physics 393
2018
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R. Abramchuk, Z. V. Khaidukov, and M. A. Zubkov, Anatomy of the chiral vortical effect , Physical Review D 98
2018
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2019
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2019
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C. X. Zhang and M. A. Zubkov, Hall conductivity as the topological invariant in the phase space in the presence of interactions and a nonuniform magnetic field , JETP Letters 110
2019
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C. X. Zhang and M. A. Zubkov, Influence of interactions on the anomalous quantum Hall effect , Journal of Physics A: Mathematical and Theoretical 53
2020
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M. A. Zubkov and R. A. Abramchuk, Effect of interactions on the topological expression for the chiral separation effect , Physical Review D 107
2023
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M. Selch, M. A. Zubkov, S. Pramanik, and M. Lewkowicz, Non-renormalization of the fractional quantum Hall conductivity by interactions , Annals of Physics, 170202 (2025)
2025
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