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Publications in Math-Net.Ru |
Citations |
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2018 |
1. |
I. R. Yukhnovskii, “Phase space of collective variables and the Zubarev transition
function”, TMF, 194:2 (2018), 224–258 ; Theoret. and Math. Phys., 194:2 (2018), 189–219 |
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1991 |
2. |
M. P. Kozlovskii, I. V. Pylyuk, I. R. Yukhnovskii, “Thermodynamic functions of three-dimensional ising model near the phase transition point with allowance for corrections to scaling. II. The case $T<T_c$”, TMF, 87:3 (1991), 434–455 ; Theoret. and Math. Phys., 87:3 (1991), 641–656 |
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3. |
M. P. Kozlovskii, I. V. Pylyuk, I. R. Yukhnovskii, “Thermodynamic functions of three-dimensional ising model near the phase transition point with allowance for corrections to scaling. I. The case $T>T_c$”, TMF, 87:2 (1991), 293–316 ; Theoret. and Math. Phys., 87:2 (1991), 540–556 |
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1990 |
4. |
O. V. Patsahan, I. R. Yukhnovskii, “Functional of the grand partition function in the method of collective variables with distinguished reference system. Multicomponent system”, TMF, 83:1 (1990), 72–82 ; Theoret. and Math. Phys., 83:1 (1990), 387–395 |
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1989 |
5. |
I. R. Yukhnovskii, “The grand function in the method of collective variables and its application to the investigation of the liquid-gas phase transition”, Trudy Mat. Inst. Steklov., 191 (1989), 201–219 ; Proc. Steklov Inst. Math., 191 (1992), 223–243 |
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6. |
O. V. Patsahan, I. R. Yukhnovskii, “Thermodynamic functions of a two-component spatially homogeneous system near the critical separation point”, TMF, 81:3 (1989), 455–467 ; Theoret. and Math. Phys., 81:3 (1989), 1329–1338 |
7. |
I. R. Yukhnovskii, “Method of collective variables with references system for the grand canonical ensemble”, TMF, 79:2 (1989), 282–296 ; Theoret. and Math. Phys., 79:2 (1989), 536–546 |
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8. |
M. P. Kozlovskii, I. R. Yukhnovskii, “Order parameters and the free energy of the three-dimensional ising model below the transition temperature”, TMF, 79:1 (1989), 135–145 ; Theoret. and Math. Phys., 79:1 (1989), 437–444 |
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1987 |
9. |
I. M. Idzik, V. A. Kolomiets, I. R. Yukhnovskii, “Liquid-gas critical point in the method of collective variables”, TMF, 73:2 (1987), 264–280 ; Theoret. and Math. Phys., 73:2 (1987), 1204–1217 |
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10. |
O. V. Patsahan, I. R. Yukhnovskii, “Phase transitions in two-component spatially homogeneous systems. I. Gaussian approximation of the partition function”, TMF, 72:3 (1987), 452–461 ; Theoret. and Math. Phys., 72:3 (1987), 998–1005 |
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1982 |
11. |
I. I. Kurylyak, I. R. Yukhnovskii, “The method of collective variables in the equilibrium statistical theory of bounded systems of charged particles. I. Continuum model of an electrolyte solution occupying a half-space”, TMF, 52:1 (1982), 114–126 ; Theoret. and Math. Phys., 52:1 (1982), 691–699 |
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12. |
Yu. V. Kozitskii, I. R. Yukhnovskii, “Generalized hierarchical model of a scalar ferromagnet in the method of collective variables”, TMF, 51:2 (1982), 268–277 ; Theoret. and Math. Phys., 51:2 (1982), 490–497 |
3
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13. |
I. A. Vakarchuk, Yu. K. Rudavskii, I. R. Yukhnovskii, “Approximate renormalization group transformation in the theory of phase transitions. I. Differential equation of the renormalization group”, TMF, 50:2 (1982), 313–320 ; Theoret. and Math. Phys., 50:2 (1982), 204–209 |
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1980 |
14. |
I. A. Vakarchuk, I. R. Yukhnovskii, “Microscopic theory of the energy spectrum of liquid HeII”, TMF, 42:1 (1980), 112–123 ; Theoret. and Math. Phys., 42:1 (1980), 73–80 |
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1979 |
15. |
I. A. Vakarchuk, O. L. Gonopol'skii, I. R. Yukhnovskii, “Self-consistent description of long-range and short-range correlations in the theory of liquid $\operatorname{He}^4$. II”, TMF, 41:1 (1979), 77–88 ; Theoret. and Math. Phys., 41:1 (1979), 896–903 |
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16. |
I. A. Vakarchuk, I. R. Yukhnovskii, “Self-consistent description of long-range and short-range correlations in the theory of liquid $\operatorname{He}^4$. I”, TMF, 40:1 (1979), 100–111 ; Theoret. and Math. Phys., 40:1 (1979), 626–633 |
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1978 |
17. |
I. R. Yukhnovskii, “Partition function of the three-dimensional Ising model”, TMF, 36:3 (1978), 373–399 ; Theoret. and Math. Phys., 36:3 (1978), 798–815 |
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1977 |
18. |
I. R. Yukhnovskii, M. P. Kozlovskii, “Critical index for the correlation length in the Ising tree-dimensional model”, Dokl. Akad. Nauk SSSR, 236:4 (1977), 846–849 |
1
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19. |
I. R. Yukhnovskii, Yu. K. Rudavskii, “Substantiation of the form of basis distribution near the phase transition point in the Ising model”, Dokl. Akad. Nauk SSSR, 233:4 (1977), 579–582 |
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20. |
I. R. Yukhnovskii, “Statistical sum of Ising three-dimensional model”, Dokl. Akad. Nauk SSSR, 232:2 (1977), 312–315 |
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21. |
P. P. Kostrobii, I. R. Yukhnovskii, “Distribution function of a degenerate electron gas in a periodic external field”, TMF, 32:2 (1977), 208–222 ; Theoret. and Math. Phys., 32:2 (1977), 694–704 |
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1975 |
22. |
I. R. Yukhnovskii, “The method of displacements and collective variables”, Trudy Mat. Inst. Steklov., 136 (1975), 425–431 |
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1974 |
23. |
I. A. Vakarchuk, I. R. Yukhnovskii, “Sevaration of “normal” and “superfluid” mctions in the Schrödinger equation by means of the method of displacements and collective variables”, TMF, 18:1 (1974), 90–107 ; Theoret. and Math. Phys., 18:1 (1974), 63–75 |
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1973 |
24. |
R. N. Petrashko, I. R. Yukhnovskii, “Investigation of the binary distribution function of a degenerate electron gas at short distances”, TMF, 17:2 (1973), 250–262 ; Theoret. and Math. Phys., 17:2 (1973), 1126–1135 |
1
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25. |
R. N. Petrashko, I. R. Yukhnovskii, “Binary distribution function of degenerate fermi systems”, TMF, 17:1 (1973), 118–130 ; Theoret. and Math. Phys., 17:1 (1973), 1030–1039 |
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1961 |
26. |
I. R. Yukhnovskii, “On the statistical theory of mixed ion-dipole systems of interacting particles”, Dokl. Akad. Nauk SSSR, 136:6 (1961), 1317–1320 |
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1993 |
27. |
L. L. Buishvili, V. S. Vladimirov, V. P. Kalashnikov, Yu. L. Klimontovich, V. G. Morozov, V. A. Moskalenko, N. M. Plakida, Yu. A. Tserkovnikov, D. V. Shirkov, I. R. Yukhnovskii, “Dmitrii Nikolaevich Zubarev (Obituary)”, UFN, 163:3 (1993), 107–108 ; Phys. Usp., 36:3 (1993), 195–196 |
1
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1979 |
28. |
I. R. Yukhnovskii, “Corrigendum”, TMF, 39:1 (1979), 143 ; Theoret. and Math. Phys., 39:1 (1979), 375 |
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