13-12U |
Investigation of spectral features of boson spectrum of two-dimensional optical lattices with graphene-type structures. II. SF-phase
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I.V. Stasyuk O.V. Velychko I.R. Dulepa |
03.75.Hh 03.75.Lm 64.70.Tg 71.35.Lk 37.10.Jk 67.85.-d |
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13-11U |
Investigation of spectral features of boson spectrum of two-dimensional optical lattices with the graphene type structure
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I.V. Stasyuk I.R. Dulepa O.V. Velychko |
66.30.Dn 66.10.Ed |
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13-10U |
One-particle spectral densities and equilibrium states of one-dimensional ion conductor
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R.Ya. Stetsiv |
75.10.Pq 66.30.Dn 03.75.Lm |
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13-09E |
Gas-liquid phase coexistence in binary ionic fluids with screened Coulomb interactions. The effect of an interaction range on the crossover temperature
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O.V. Patsahan |
05.70.Fh 64.60.De 64.60.F- |
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13-08U |
What is the universality class of the phase transition into superconducting/superfluid state?
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Yu. Holovatch |
01.75.+m 05.50.+q 89.75.-k |
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13-07U |
Integral brackets and pair-scattering functions of the kinetic theory for dense gaseous mixtures with multistep interaction
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Y.A. Humenyuk M.V. Tokarchuk |
05.20.Dd 51.10.+y 05.60.Cd 05.60.-k |
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13-06U |
Study of electronic states in highly anisotropic structures with stage ordering
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I.V. Stasyuk O.V. Velychko |
03.75.Hh 03.75.Lm 64.70.Tg |
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13-05U |
On the comparison of extensive and intensive measures of scientific group efficiency
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O. Mryglod R. Kenna Yu. Holovatch B. Berche |
01.30.-y 02.50.-r |
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13-04U |
An interaction of scalar particles via tachyon field
|
I. Zagladko A. Duviryak |
11.10.Ef 11.10.Lm |
|
13-03E |
The Ginzburg temperature of ionic fluids: the effect of Coulomb interactions
|
O.V. Patsahan |
05.20.-y 05.70.Fh 64.60.De 64.60.F- |
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13-02U |
On the problem of science evaluation
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O. Mryglod R. Kenna Yu. Holovatch B. Berche |
01.30.-y 02.50.-r |
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13-01E |
Fluid interacting with a two-Yukawa potential at a hard wall: field theory treatment
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I. Kravtsiv M. Holovko D. di Caprio J. Stafiej |
05.20.Jj 05.70.Np 61.20.-p 68.03.-g |
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12-17U |
The effect of hydrostatic and uniaxial pressures on phase transition and physical characteristics of KH$_2$PO$_4$ type ferroelectrics
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A.S. Vdovych R.R. Levitsky I.R. Zachek |
77.22.Ch 77.84.-s 77.80.-e 77.80.Bh 77.65.Bn 77.22.Ej |
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12-16U |
Phase diagram and non-linear susceptibility of proton glass model with competition of random short-range and long-range interactions
|
S.I. Sorokov A.S. Vdovych R.R. Levitsky |
75.10.Nr 77.22.-d 77.80.-e 77.80.Bh |
|
12-15U |
To the theory of longitudinal thermodynamic properties of KH$_2$PO$_4$ type ferroelectrics
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I.R. Zachek R.R. Levitsky A.S. Vdovych |
77.22.Ch 77.84.-s 77.80.-e 77.80.Bh 77.65.Bn 77.22.Ej |
|
12-14U |
Structural transformations of the surface and chemical oscillations
|
I.S. Bzovska I.M. Mryglod |
82.65.+r 82.40.Bj |
|
12-13E |
Dissipative particle dynamics study of solvent mediated transitions in pores decorated with tethered polymer brushes in the form of stripes
|
J.M. Ilnytskyi S. Soko{\l}owski T. Patsahan |
62.23.St 36.20.Ey 61.20.Ja |
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12-12U |
Ground states of an Ising model on an extended Shastry–Sutherland lattice and the 1/2-magnetization plateau in some rare-earth-metal tetraborides
|
Yu.I. Dublenych |
75.60.Ej 05.50.+q 75.10.Hk 75.10.-b |
|
12-11U |
Boson and fermion spectrа of the Bose-Fermi-Hubbard model
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I.R. Kozyarsky T.S. Mysakovych I.V. Stasyuk |
64.75.+g 71.20.Tx 64.70.-p |
|
12-10U |
Energy spectrum and phase diagrams of two-sublattice hard-core boson model
|
I.V. Stasyuk O. Vorobyov |
03.75.Hh 03.75.Lm 75.10.Pq |
|
12-09E |
Quantization of almost-circular orbits in the Fokker action formalism. II. Regge trajectories
|
A. Duviryak |
03.65.Sq 11.10.Lm 12.39.Ki |
|
12-08E |
Quantization of almost-circular orbits in the Fokker action formalism. I. General scheme
|
A. Duviryak |
03.20 03.30.+p 11.30.Cp |
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12-07E |
Hard-core Bose-Hubbard model beyond mean field approximation
|
I.V. Stasyuk T.S. Mysakovych |
03.75.Lm 05.30.Jp |
|
12-06U |
Publications of the researchers of the Institute for Condensed Matter Physics of the National Academy of Sciences of Ukraine. 2009-2011 years. Bibliographic index
|
|
01.30.Tt |
|
12-05U |
Relaxation dynamics of Rochelle salt. Taking into account of piezoelectric coupling
|
I.R. Zachek R.R. Levitsky |
05.60.+w 05.70.Ln 05.20.Dd 52.25.Dg 52.25.Fi |
|
12-04U |
Dielectric, piezoelectric, elastic and thermal properties of rochelle salt NaKC$_4$H$_4$O$_6$ $\cdot$ 4H$_2$O
|
I.R. Zachek R.R. Levitskii |
77.84.-s 64.60.Cn 77.22.-d 77.80.-e 77.80.Bh 77.65.Bn |
|
12-03U |
Dielectric properties of monoclinic RbD$_2$PO$_4$. The effect of hydrostatic pressure
|
R.R. Levitsky I.R. Zachek A.S. Vdovych |
77.84.-s 64.60.Cn 77.22.-d 77.80.-e 77.80.Bh 77.65.Bn |
|
12-02E |
Superluminal neutrino phenomenon as a result of the equivalence principle violation
|
O.F. Batsevych R.B. Kapustiy |
04.20.Cv 13.15.+g 98.35.-a |
|
12-01E |
Bose-Fermi-Hubbard model beyond mean field approximation
|
T.S. Mysakovych |
37.10.Jk 67.85.Pq 71.10.Fd |
|
11-21E |
Energy spectrum of pseudospin-electron model in the dynamical mean-field theory
|
I.V. Stasyuk V.O. Krasnov |
71.10 Fd 71.38 |
|