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2016


Papers

  1. Baran O.R., Verkholyak T.M. Two-dimensional Spin-1/2 J1 – J'1 – J2 Heisenberg model within Jordan–Wigner transformation // Ukr. J. Phys., 2016, vol. 61, № 7, p.597-605.
  2. Baumketner A. and Cai W. Equilibrium clusters in suspensions of colloids interacting via potentials with a local minimum // Condens. Matter Phys., 2016, vol. 19, № 1, p. 13605-13615.
  3. Baumketner A., Melnyk R.,  Holovko M.F., Cai W., Costa D. and Caccamo C. Softness and non-spherical shape define the phase behavior and the structural properties of lysozyme in aqueous solutions // J. Chem. Phys., 2016, vol. 144, № 1, 015103.
  4. Berche B., Holovatch Yu., Kenna R., Mryglod O. Academic research groups: evaluation of their quality and quality of their evaluation // J. Phys.: Conf. Ser., 2016, vol. 681, 012004.
  5. Borówko M., Ilnytskyi J., Pizio O. Exploring fluid-solid interfaces with Stefan Sokołowski // Condens. Matter Phys., 2016, vol. 19, №1, 10101, DOI:10.5488/CMP.19.10101.
  6. Bryk T., Haymet A.D.J. Profiles of electrostatic potential across the water-vapor, ice-vapor and ice-water interfaces // Condens. Matter Phys., 2016, vol. 19, № 1, p. 13607:1-7.
  7. Bryk T., Seitsonen A.P. Ab initio molecular dynamics study of collective excitations in liquid H2O and D2O: Effect of dispersion corrections // Condens. Matter Phys., 2016, vol. 19, № 2, p. 23604:1-14.
  8. Bryk T., Wax J.-F. A search for manifestation of two types of collective excitations in dynamic structure of a liquid metal: Ab initio study of collective excitations in liquid Na // J. Chem. Phys., 2016, vol. 144, № 19, p. 194501:1-9.
  9. Bryk T., Wax J.-F. Erratum: “A search for manifestation of two types of collective excitations in dynamic structure of a liquid metal: Ab initio study of collective excitations in liquid Na” [J. Chem. Phys., 2016, vol. 144, 194501] // J. Chem. Phys., 2016, vol. 144 (21), p. 219903:1.
  10. Bzovska I.S., Mryglod I.M. Surface patterns in catalytic carbon monoxide oxidation reaction // Ukr. J. Phys., 2016, vol. 61, № 2, p. 134-142.
  11. Caprio di D., Kravtsiv I., Patsahan T., Holovko M. Oscillating Yukawa fluid at a hard wall: field theory description // Mol. Phys., 2016, vol. 114, № 16-17, p. 2500-2515.
  12. Chen W., Zhao S., Holovko M., Chen X., Dong W. Scaled particle theory for multi-component hard sphere fluids confined in random porous media // J. Phys. Chem. B, 2016, vol. 120, № 24, p. 5491-5504.
  13. Delamotte B., Dudka M., Mouhanna D., Yabunaka S. Functional renormalization group approach to non-collinear magnets // Phys. Rev. B, 2016, vol. 93, № 6, 064405.
  14. Devereaux T.P., Shvaika A.M., Wu K., Wohlfeld K., Jia C.J., Wang Y., Moritz B., Chaix L., Lee W.-S., Shen Z.-X., Ghiringhelli G., Braicovich L. Directly characterizing the relative strength and momentum dependence of electron-phonon coupling using resonant inelastic x-ray scattering // Phys. Rev. X., 2016, vol. 6, № 4,   041019 (12 pages). [doi:10.1103/PhysRevX.6.041019]; Preprint arXiv:1605.03129.
  15. Druchok M., Malikova M., Rollet A.-L., Vlachy V. Counter-ion binding and mobility in the presence of hydrophobic polyions – combining molecular dynamics simulations and NMR // AIP Advances, 2016, vol. 6, № 6, 065214; doi: 10.1063/1.4954292.
  16. Dublenych Yu.I. Incommensurate single-angle spiral ordering of classical Heisenberg spins on zigzag ladder lattices // Phys. Rev. B, 2016, vol. 93, № 5, 054415.
  17. Dudka M., Kondrat S., Kornyshev A., Oshanin G. Phase behaviour and structure of a superionic liquid in nonpolarized nanoconfinement // J. Phys.: Cond. Matt., 2016, vol. 28, № 46, 464007.
  18. Dudka M., Folk R., Holovatch Yu. Phase diagram of Model C in the parametric space of order parameter and space dimensions // Phys. Rev. B, 2016, vol. 93, № 9, 094301.
  19. Dudka M., Fedorenko A., Blavatska V., Holovatch Yu. Critical behavior of the two-dimensional Ising model with long-range correlated disorder // Phys. Rev. B, 2016, vol. 93, № 22, p. 224422:1-13.  
  20. Dzikovskui D.V, Solovyan V.B., Tyshko N.L. Correlation functions of the degenerate relativistic electron gas with high density // Mathematical Modeling and Computting, 2016, vol. 3, № 1, p. 97-110. 
  21. Finkelstein Y., Moreh R., Shang S.L., Shchur Ya., Wang Y., Liu Z.K. On the mean kinetic energy of the proton in strong hydrogen bonded systems // J. Chem. Phys., 2016, vol. 144, № 5, p. 054302: 1-9.
  22. Fischer M.H., Maksymenko M., Altman E. Dynamics of a Many-Body-Localized System Coupled to a Bath // Phys. Rev. Lett., 2016, vol. 116, № 16, 160401.
  23. Freericks J.K., Matveev O.P., Shvaika A.M., Devereaux T.P. Theoretical description of pump/probe experiments in nesting induced charge density wave insulators // Proc. SPIE, 2016, vol. 9835, Ultrafast Bandgap Photonics, p. 98351F (7 pages) [doi:10.1117/12.2223335].
  24. Fulga I.C., Maksymenko M. Scattering matrix invariants of Floquet topological insulators // Phys. Rev. B, 2016, vol. 93, № 7, 075405.
  25. Haydukivska K., Blavatska V.  Loop statistics in polymers in crowded environment // J. Chem. Phys., 2016, vol. 144, № 9, p. 084901:1-6.
  26. Hlushak S., Stoyanov S.R., Kovalenko A. A 3D-RISM-KH Molecular Theory of Solvation Study of the Effective Stacking Interactions of Kaolinite Nanoparticles in Aqueous Electrolyte Solution Containing Additives // J. Phys. Chem. C, 2016, vol. 120, p. 21344–21357.
  27. Hlushak P.A., Tokarchuk M.V. Chain of kinetic equations for the distribution functions of particles in simple liquid taking into account nonlinear hydrodynamic fluctuations // Physica A, 2016, vol. 443, p. 231-245.
  28.  Holovatch Yu., Mryglod O., Szell M., Thurner S. Analyses of a Virtual World. – In: Maths Meets Myths: Complexity-science approaches to folktales, myths, sagas, and histories. R. Kenna, M. Mac Carron, P. Mac Carron (Editors), Springer, 2016.
  29.  Holovatch Yu., Palchykov V. Complex Networks of Words in Fables. – In: Maths Meets Myths: Complexity-science approaches to folktales, myths, sagas, and histories. R. Kenna, M. Mac Carron, P. Mac Carron (Editors), Springer, 2016.
  30. Holovko M.F., Patsahan T.M., Shmotolokha V.I. The properties of fluids in random porous media. Scientific council “Physics of soft matter”, Lviv-Kyiv, 2016, p. 15-22 (in Ukrainian).
  31. Holovko M.F., Patsahan O., Patsahan T. Vapour-liquid phase diagram for an ionic fluid in a random porous medium // J. Phys.: Cond. Matt., 2016, vol. 28, № 41, p. 414003:1-11.
  32. Holovko M., Patsahan T., Kravtsiv I., di Caprio D. Maier-Saupe nematogenic fluid with isotropic Yukawa repulsion at a hard wall: Mean field approximation // Condens. Matter Phys., 2016, vol. 19, № 1, p.13608.
  33. Holovko M., Kovalenko A., Hirata F. Partial molar volume of non-ionic surfactants in aqueous solution studied by KB/3D-RISM-KH theory // J. Mol. Liq., 2016, vol. 217, p. 105-111.
  34. Hvozd T.V., Kalyuzhnyi Y.V. Two- and three-phase equilibria in polydisperse Yukawa hard-sphere mixture. High temperature and mean spherical approximations // Condens. Matter Phys., 2016, vol. 19, № 2, 23603.
  35. Huerta A., Tejeda D., Henderson D., Trokhymchuk A. Frustration of freezing in a two-dimensional hard-core fluid due to particle shape anisotropy // Condens. Matter Phys., 2016, vol.19, № 2,  p. 23605:1-9.
  36. Humenyuk Y.A. Thermodynamic quantities of a low-density gas in the weakly nonequilibrium heat-conduction steady state // Ukr. J. Phys., 2016, vol. 61, № 5, p. 400–412.
  37. Humenyuk Y.A. Pressure and entropy of hard spheres in the weakly nonequilibrium heat-conduction steady state // Condens. Matter Phys., 2016, vol. 19, № 4, p.43002:1-12.
  38. Ilnytskyi H.I., Ilnytskyi J.M. The elements for selective computerized indication of the TUB disease spread in various age categories // Scientific Technologies, 2016, №2 (30), p. 169-173 (in Ukrainian).
  39. Ilnytskyi J.M., Bryk P., Patrykiejew A. Pressure-driven flow of oligomeric fluid in nano-channel with complex structure. A dissipative particle dynamics study // Condens. Matter Phys., 2016, vol. 19, № 1, 13609, DOI:10.5488/CMP.19.13609.
  40. Ilnytskyi J.M., Slyusarchuk A.Y., Saphiannikova M. Photo-controllable percolation of decorated nanoparticles in a nanopore: molecular dynamics simulation study // Mathematical Modeling and Computing, 2016, vol. 3, № 1, p. 33–34.
  41. Ilnytskyi J.M., Slyusarchuk A., Saphiannikova M. Photo-controllable self-assembly of azobenzene-decorated nanoparticles in bulk: computer simulation study // Macromolecules, 2016, vol.49, №23, p.9272–9282, DOI: 10.1021/acs.macromol.6b01871
  42. Ilnytskyi J., Patsahan T., Pizio O. On the properties of the curcumin molecule in water. Exploration of the OPLS - United atom model by molecular dynamics computer simulation // J. Mol. Liq., 2016, vol.223, p.707–715, DOI:10.1016/j.molliq.2016.08.098.
  43. Ilnytskyi J., Kozitsky Y., Ilnytskyi H., Haiduchok O. Stationary states and spatial patterning in an SIS epidemiology model with implicit mobility // Physica A: Statistical Mechanics and its Applications, 2016, vol.461, p.36-45, DOI:10.1016/j.physa.2016.05.006.
  44. Kalyuzhnyi Y.V., Vlachy V. Explicit-water theory for the salt-specific effects and Hofmeister series in protein solutions // J. Chem. Phys., 2016, vol. 144, № 21,  215101.
  45. Kalyuzhnyi O., Ilnytskyi J.M., Holovatch Yu., von Ferber C. Universal shape characteristics for the mesoscopic polymer chain via dissipative particle dynamics // J. Phys.: Cond. Matt., 2016, vol.28, №50, 505101, 10.1088/0953-8984/28/50/505101.
  46. Kastelic M., Kalyuzhnyi Y.V., Vlachy V. Modeling phase transitions in mixtures of   β-γ lens crystallins // Soft Matter, 2016, vol. 12, № 35, p. 7289-7298.
  47. Kastelic M., Kalyuzhnyi Y.V., Vlachy V. Fluid of fused spheres as a model for protein solution // Condens. Matter Phys., 2016, vol. 19, № 2, 23801.
  48. Kovalskiy B., Semeniv M., Shovgenyuk M. Сomputer program for the image synthesis on impress for the new information and traditional technologies of color printing // Science and Education a New Dimention: Natural and Technical Science, IV(10), 2016, Issue 91, p. 72-78 (in Ukrainian).
  49. Kovalskiy B.M.,  Semeniv V.V., Semeniv M.R., Shovhenyuk M.V. Identification of characteristics of standard conditions in color separation using program "ICAS-Color Inks Gamut" // Scientific papers. – Lviv: UAP, 2016, №1 (52), с. 51-61 (in Ukrainian).
  50. Shovgenyuk M.V., Kovalskiy B.M., Semeniv М.R., Zanko N.V., Pysanchyn N.S. Quantitative evaluation of quality of image color separation for color printing // Printing and publishing, 2016, №1 (71), p. 79-90 (in Ukrainian)
  51. Kozlovskii M.P., Dobush O.A. Representation of the grand partition function of the cell model: The state equation in the mean-field approximation // J. Mol. Liq., 2016, vol. 215, p. 58-68.
  52. Korotkova T.N., Likhovaya D.V., Levitskii R.R., Korotkov L.N. Anomalous thermal hysteresis and the diffuseness of phase transitions in K1–x(NH4)xH2PO4 solid solutions // Bulletin of the Russian Academy of Sciences: Physics, 2016, vol. 80, issue 9, p. 1051–1054 (in Russian).
  53. Kostrobij P.,  Markovych B., Viznovych O., Tokarchuk M. Generalized diffusion equation with fractional derivatives within Renyi statistics // J. Math. Phys., 2016, vol. 57, № 9, p. 093301:1-8.
  54. Костробій П., Маркович Б., Візнович О., Токарчук М. Узагальнене рівняння дифузії у дробових похідних у статистиці Рені // Фіз.-матем. модел. інформ. техн., 2016, вип. 23,  c. 108-118 (in Ukrainian).
  55. Krasnytska M., Berche B., Holovatch Yu., Kenna R. Partition function zeros for the Ising model on complete graphs and on annealed scale-free networks // J. Phys. A, 2016, vol. 49, № 13, 135001.
  56. Krasnytska M., Sarkanych P., Berche B., Holovatch Yu., Kenna R. Marginal dimensions of the Potts model with invisible states // J. Phys. A, 2016, vol. 49, № 25, 255001.
  57. Laird B.B., Bryk T. Tribute to Tony Haymet // Condens. Matter Phys., 2016, vol. 19, № 2, p. 20101:1-4.
  58. Lisnyi B., Strečka J. Exactly solved mixed spin-(1,1/2) Ising–Heisenberg distorted diamond chain // Physica A, 2016, vol. 462, p. 104-116.
  59. Matveev O.P., Shvaika A.M., Devereaux T.P., Freericks J.K. Nonequilibrium dynamical mean-field theory for the charge-density-wave phase of the Falicov-Kimball model // J. Supercond. Novel Magn., 2016, vol. 29, № 3, p. 581–585. [doi:10.1007/s10948-015-3304-2; Preprint arXiv:1507.08725.
  60. Matveev O.P., Shvaika A.M., Devereaux T.P., Freericks J.K. Nonequilibrium response of an electron-mediated charge density wave ordered material to a large dc electric field // Phys. Rev. B, 2016, vol.93, №4, 045110 (9 pages). [doi:10.1103/PhysRevB.93.045110; Preprint arXiv:1511.01595.
  61. Matveev O.P., Shvaika A.M., Devereaux T.P., Freericks J.K. Time-domain pumping a quantum-critical charge density wave ordered material // Phys. Rev. B, 2016, vol. 94, №11, 115167 (11 pages). [doi:10.1103/PhysRevB.94.115167]; Preprint arXiv:1607.04363.
  62. Melnyk R., Nezbeda I., Trokhymchuk A. Structure factor of a hard-core fluid with short-range Yukawa attraction: analytical FMSA theory against Monte Carlo simulations // Molecular Physics, 2016, vol. 114, № 16-17,  p. 2523-2529.
  63. Mryglod O., Holovatch Yu., Kenna R., Berche B. Quantifying the evolution of a scientific topic: reaction of the academic community to the Chornobyl disaster //  Scientometrics, 2016, vol. 106, № 3, p. 1151–1166.
  64. Мриглод І.М. Посилення внутрішньої і зовнішньої комунікації – одне з першорядних завдань Академії // Вісник НАН України, 2016, № 5, с. 47-49 (in Ukrainian).
  65. Мриглод І.М. Роль науки у розвитку України – ключова // Світогляд, 2016, № 4(60), с. 65-69 (in Ukrainian).
  66. Műller P., Richter J., Derzhko O. Hubbard models with nearly flat bandas: Ground-state ferromagnetism driven by kinetic energy // Phys. Rev. B, 2016, vol. 93, № 14, p. 144418: 1-17.
  67. Palchykov V., Gemmetto V., Boyarsky A., Garlaschelli D. Ground truth? Concept-based communities versus the external classification of physics manuscripts // EPJ Data Science, 2016, vol. 5, № 28.
  68. Pylyuk I.V., Kozlovskii M.P. Structural characteristics of a three-dimensional Ising-like system in the critical region // Int. J. Mod. Phys. B, 2016, vol. 30, № 32, 1650232 (14 pages).
  69. Rescic J., Kalyuzhnyi Y.V., Cummings P.T. Shielded attractive shell model again: resummed thermodynamic perturbation theory for central force potential // J. Phys.: Cond. Matt., 2016, vol. 28, № 41, 414011.
  70. Saphiannikova M., Toshchevikov V., Petrova T., Ilnytskyi J. Theory and computer simulation of photo induced deformations in liquid crystal azobenzene polymers // Proc. SPIE 9940, 2016,  Liquid Crystals XX, 99400C, DOI:10.1117/12.2236007.
  71. Seitsonen A.P., Bryk T. Melting temperature of water: DFT-based molecular dynamics simulations with D3 dispersion correction // Phys. Rev. B, 2016, vol. 94, № 18, p. 184111:1-5.
  72. Shchur Y., Bryk T., Klevets I., Kityk A.V. Lattice dynamics ab initio study of CsH2PO4 and CsD2PO4 crystals // Comput. Mater. Sci., 2016, vol. 111, p. 301-309.
  73. Shpot M.A., Pogány T.K. The Feynman integral in R1⊕Rm and complex expansion of 2F1;// Integral Transforms Spec. Funct.,  2016,  vol. 27, № 7,  p.  533–547.
  74. Shpot M.A., Paris R.B. Integrals of products of Hurwitz zeta functions via Feynman parametrization and two double sums of Riemann zeta functions // Mathematica Aeterna,  2016,  vol. 6, № 5,  p. 745–764.
  75. Shpot M.A., Chaudhary M.P., Paris R.B. Integrals of products of Hurwitz zeta functions and the Casimir effect in ɸ4 field theories // Journal of Classical Analysis, 2016, vol. 9,  № 2,  p. 99-115.
  76. Shvaika A.M. Spectral properties of four-time fermionic Green's functions // Condens. Matter Phys., 2016, vol. 19, №3, 33004 (14 pages). [doi:10.5488/CMP.19.33004]; Preprint arXiv:1512.04687.
  77. Stasyuk I.V., Stetsiv R.Ya. Dynamic conductivity of one-dimensional ion conductors. Impedance, Nyquist diagrams // Condens. Matter Phys., 2016, vol. 19, №4, 43704.
  78. Vdovych A.S., Moina A.P., Levitskii R.R., Zachek I.R. Piezocaloric and multicaloric effect in the KH2PO4 type ferroelectrics // Ferroelectrics, 2016, vol. 501, № 1, p. 83–90.
  79. Verkholyak T., Strečka J. Fractional magnetization plateaus of the spin-1/2 Heisenberg orthogonal-dimer chain: Strong-coupling approach developed from the exactly solved Ising-Heisenberg model // Phys. Rev. B, 2016, vol. 94, № 14, 144410 (13 pages).
  80. Wax J.-F., Bryk T., Johnson M.R. Efficient analytical expressions for dynamic structure of liquid binary alloys: K-Cs as a case study // J. Phys.: Cond. Matt., 2016, vol. 28, № 18, p. 185102:1-11.
  81. Шовгенюк М.В., Ковальский Б.М. Новая информационная технология цифровой цветной печати ICaS-ColorPrint // XIII международный конгресс "Машины. Технологии. Материалы", т. 5/121. –  София, Болгария, 2016, с. 115-121 (in Russian).
  82. Yaremko Yu. Relativistic shifts of eigenfrequencies in an ideal Penning trap // Int. J. Mass Spectrometry, 2016, vol. 405, p. 64–77.
  83. Yaremko Yu., Przybylska M., Maciejewski A.J. Penning trap with an inclined magnetic field // Chaos, 2016, vol. 26, № 8, 083118:1-12.
  84. Yukhnovskii I.R., Hlushak P.A., Tokarchuk M.V. BBGKY chain of kinetic equations, non-equilibrium statistical operator method and collective variable method in the statistical theory of  non-equilibrium liquids // Condens. Matter Phys., 2016, vol. 19, № 4, p. 43705:1-18.
  85. Yukhnovskii I.R., Holovko M.F. Introduction. Scientific council “Physics of soft matter”, Lviv-Kyiv, 2016, p. 5-7 (in Ukrainian).