Институт теоретической физики им. Л.Д. Ландау

Российской академии наук



  1. I.V. Gornyi, V.Yu. Kachorovskii, A.D. Mirlin, Anomalous Hooke's law in disordered graphene, 2D Materials, 4(1), 011003 (2017), WoS: 000387905400001, Scopus: 2-s2.0-85014456682.
  2. A.G. Lebed, Response to: Comment on “Does the Equivalence between Gravitational Mass and Energy Survive for a Composite Quantum Body?”, Adv. High Energy Physics, 2017, 1683075 (2017), WoS: 000413592500001.
  3. B. Feigin, M. Jimbo, T. Miwa, E. Mukhin, Finite Type Modules and Bethe Ansatz Equations, Ann. Henri Poincaré, 18(8), 2543–2579 (2017); arXiv:1609.05724, WoS: 000404978900029, Scopus: 2-s2.0-85017129329.
  4. I.S. Burmistrov, K.S. Tikhonov, I.V. Gornyi, A.D. Mirlin, Entanglement entropy and particle number cumulants of disordered fermions, Ann. Phys., 383, 140-156 (2017); arXiv:1701.05876, WoS: 000407667300008, Scopus: 2-s2.0-85020748234.
  5. I.V. Protopopov, Yu. Gefen, A.D. Mirlin, Transport in a disordered ν=2/3 fractional quantum Hall junction, Ann. Phys., 385, 287-327 (2017); arXiv:1703.02746, WoS: 000413282300014, Scopus: 2-s2.0-85029468518.
  6. I.V. Gornyi, A.D. Mirlin, D.G. Polyakov, A.L. Burin, Spectral diffusion and scaling of many-body delocalization transitions, Annalen der Physik, 529(7), 1600360 (2017), WoS: 000404978900029, Scopus: 2-s2.0-85018685229.
  7. I.V. Gornyi, A.D. Mirlin, M. Müller, D.G. Polyakov, Absence of many-body localization in a continuum, Annalen der Physik, 529(7), 1600365 (2017), WoS: 000404978900030, Scopus: 2-s2.0-85013188742.
  8. S. Rumyantsev, X. Liu, V. Kachorovskii, M. Shur, Homodyne phase sensitive terahertz spectrometer, Appl. Phys. Lett. 111, 121105 (2017), WoS: 000411646300005, Scopus: 2-s2.0-85029746678.
  9. L. Giani, A.Yu. Kamenshchik, Hořava-Lifshitz gravity inspired Bianchi-II cosmology and the mixmaster universe, Class. Quantum Grav., 34, 085007 (2017); arXiv:1606.03243, WoS: 000398121500001, Scopus: 2-s2.0-85016987038.
  10. B. Feigin, M. Jimbo, T. Miwa, E. Mukhin, Finite Type Modules and Bethe Ansatz for Quantum Toroidal gl(1), Commun. Math. Phys., 356(1), 285-327 (2017); arXiv:1603.02765, WoS: 000409821300009, Scopus: 2-s2.0-85027970512.
  11. L.Yu. Barash, M. Weigel, M. Borovský, W. Janke, L.N. Shchur, GPU accelerated population annealing algorithm, Comp. Phys. Commun., 220, 341-350 (2017); arXiv:1703.03676, WoS: 000412252300029, Scopus: 2-s2.0-85028032759.
  12. S.V. Savchenko, On the number of 7-cycles in regular n-tournaments, Discrete Mathematics, 340(2), 264-285 (2017), WoS: 000390076800032, Scopus: 2-s2.0-84993965581.
  13. H. Motohashi, A.A. Starobinsky, Constant-roll inflation: Confrontation with recent observational data, EPL 117, 39001 (2017); arXiv:1702.05847, WoS: 000401165300001, Scopus: 2-s2.0-85016566873.
  14. H. Motohashi, A.A. Starobinsky, f(R) constant-roll inflation, Eur. Phys. J. C 77(8), 538 (2017); arXiv:1704.08188, WoS: 000407635000002, Scopus: 2-s2.0-85027590174.
  15. E.S. Pikina, B.I. Ostrovskii, Nucleation and growth of droplets in the overheated free-standing smectic films, Eur. Phys. J. E 40 (3), 24 (2017), WoS: 000395120800001, Scopus: 2-s2.0-85014530288.
  16. L.Yu. Barash, M. Weigel, L.N. Shchur, W. Janke, Exploring first-order phase transitions with population annealing, Eur. Phys. J. Spec. Top., 226(4), 595-604 (2017); arXiv:1704.01888, WoS: 000399440100006, Scopus: 2-s2.0-85017014428.
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  18. E. Feigin, I. Makhlin, Vertices of FFLV polytopes, J. Algebr. Comb., 45(4), 1083-1110 (2017), WoS: 000400862700006, Scopus: 2-s2.0-85007477145.
  19. Yu.M. Yevdokimov, S.G. Skuridin, S.V. Semenov, L.A. Dadinova, V.I. Salyanov, E.I. Kats, Re-entrant cholesteric phase in DNA liquid-crystalline dispersion particles, J. Biol. Phys., 43(1), 45-68 (2017), WoS: 000395080700004, Scopus: 2-s2.0-85007439423.
  20. C.-Q. Geng, C.-C. Lee, M. Sami, E.N. Saridakis, A.A. Starobinsky, Observational constraints on successful model of quintessential Inflation, J. Cosm. Astropart. Phys., 1706, 011 (2017); arXiv:1705.01329, WoS: 000403482400016, Scopus: 2-s2.0-85021674397.
  21. A.I. Dyachenko, D.I. Kachulin, V.E. Zakharov, Super compact equation for water waves, J. Fluid Mech., 828, 661-679 (2017), WoS: 000410524800001.
  22. A.G. Meshkov, V.V. Sokolov, On third order integrable vector Hamiltonian equations, J. Geom. Phys., 113, 206-214 (2017), WoS: 000394078200017, Scopus: 2-s2.0-85008599127.
  23. M. Bershtein, G. Bonelli, M. Ronzani, A. Tanzini, Gauge theories on compact toric surfaces, conformal field theories and equivariant Donaldson invariants, J. Geom. Phys., 118, 40-50 (2017); arXiv:1606.07148, WoS: 000404303100004, Scopus: 2-s2.0-85011016324.
  24. S.N. Vergeles, A note on the possible existence of an instanton-like self-dual solution to lattice Euclidean gravity, J. High Energy Phys., 1702, 044 (2017), WoS: 000394747600007, Scopus: 2-s2.0-85012118440.
  25. K. Aleshkin, V. Belavin, C. Rim, Minimal gravity and Frobenius manifolds: bulk correlation on sphere and disk, J. High Energy Phys., 1711, 169 (2017); arXiv:1708.06380, WoS: 000416360500002, Scopus: 2-s2.0-85036621032.
  26. V.A. Belyakov, From liquid crystals localized modes to localized modes in photonic crystals, J. Laser, Opt. Photonics, 4(2), 153 (2017).
  27. S.M. Umaev, A.A. Levchenko, N.N. Kolesnikov, S.V. Filatov, Influence of Helium Atoms Absorption on the Emission Properties of Carbon Nanotubes, J. Low Temp. Phys., 187(1-2), 166-171 (2017), WoS: 000395071600017, Scopus: 2-s2.0-85006355418.
  28. G.E. Volovik, K, Zhang, Lifshitz transitions, type-II Dirac and Weyl fermions, event horizon and all that, J. Low Temp. Phys., 189(5-6), 276-299 (2017); arXiv:1604.00849, WoS: 000413813500005, Scopus: 2-s2.0-85031924946.
  29. M. Magnitskaya, N. Chtchelkatchev, A. Tsvyashchenko, D. Salamatin, S. Lepeshkin, L. Fomicheva, M. Budzyński, Electron and phonon properties of noncentrosymmetric RhGe from ab initio calculations, J. Magnetism and Magnetic Materials, In Press, Available online 25 October 2017; arXiv:1701.00230.
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  31. A.I. Dyachenko, D.I. Kachulin, V.E. Zakharov, Envelope equation for water waves, J. Ocean Engineering & Marine Energy, 3(4), 409-415 (2017), Scopus: 2-s2.0-85032032247.
  32. M.A. Bershtein, A.I. Shchechkin, Q-deformed Painlevé τ function and q-deformed conformal blocks, J. Phys. A 50, 085202 (2017); arXiv:1608.02566, WoS: 000394610200001, Scopus: 2-s2.0-85011279038.
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  34. I.V. Kolokolov, Evolution of magnetic field fluctuations in two-dimensional chaotic flow, J. Phys. A 50, 155501 (2017), WoS: 000398674200001, Scopus: 2-s2.0-85015723905.
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  38. J. Peters, J. Marion, F. Natali, E. Kats, D.J. Bicout, The dynamical transition of lipid multilamellar bilayers as a matter of cooperativity, J. Phys. Chem. B 121(8), 6860-6868 (2017), WoS: 000406357200010, Scopus: 2-s2.0-85025664149.
  39. C. Sun, T. Nattermann, V.L. Pokrovsky, Bose-Einstein condensation and superfluidity of magnons in yttrium iron garnet films, J. Phys. D 50, 143002 (2017), WoS: 000404427700002, Scopus: 2-s2.0-85016144826.
  40. B. Rethfeld, D. Ivanov, M. Garcia, S. Anisimov, Modelling ultrafast laser ablation, J. Phys. D: Appl. Phys. 50, 193001 (2017), WoS: 000399252000001, Scopus: 2-s2.0-85018404681.
  41. L.P. Gor’kov, G.B. Teitel’baum, On the Origin of a Small Hole Pocket in the Fermi Surface of Underdoped YBa2Cu3Oy, J. Supercond. Novel Magn., article in press, available online 30 September 2017, Scopus: 2-s2.0-85030148958.
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  47. S.E. Parkhomenko, Generalized Kähler Geometry and current algebras in SU(2) × U(1) N = 2 superconformal WZW model, Mod. Phys. Lett. A 32(13), 1750076 (2017); arXiv:1701.05229, Scopus: 2-s2.0-85017503490.
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Статьи в сборниках

  1. I.S. Burmistrov, Transport in a two-dimensional disordered electron liquid with isospin degrees of freedom, In: Strongly Correlated Electrons in Two Dimensions, pp. 65-116. Ed. S.V. Kravchenko, Pan Stanford Publishing 2017. ISBN 9789814745376; arXiv:1609.07874, WoS: 000416703600004.

Труды конференций

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  20. N.A. Inogamov, V.A. Khokhlov, V.V. Zhakhovsky, K.V. Khishchenko, S.I. Anisimov, Ablation of gold into water, Proc. XXXII Int. Conf. on Interaction of Intense Energy Fluxes with Matter (Elbrus 2017), March 1-6, 2017, Elbrus, Kabardino-Balkaria, Russia [Matter and Radiation at Extremes, in press, 2017].
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