|
|
Publications in Math-Net.Ru |
Citations |
|
2022 |
1. |
A. L. Khomkin, A. S. Shumikhin, “Coulomb logarithm in calculating plasma conductivity: Analytical theory and numerical simulation”, TVT, 60:4 (2022), 483–487 ; High Temperature, 60:4 (2022), 433–437 |
|
2021 |
2. |
A. L. Khomkin, A. S. Shumikhin, “Процессы термической и “холодной” ионизации паров металлов в окрестности критической точки перехода пар–жидкость”, TVT, 59:6 (2021), 805–811 |
1
|
3. |
A. L. Khomkin, A. S. Shumikhin, “A “user-friendly” three-component chemical model of nonideal plasma”, TVT, 59:1 (2021), 3–11 ; High Temperature, 59:1 (2021), 1–9 |
2
|
4. |
A. L. Khomkin, A. S. Shumikhin, “Supercritical fluid of metal vapor plasmas, rare gases, and excitons”, UFN, 191:11 (2021), 1187–1211 ; Phys. Usp., 64:11 (2021), 1125–1148 |
5
|
|
2020 |
5. |
A. L. Khomkin, A. S. Shumikhin, “Plasma frequency, parabolic trajectories, and conductivity of nonideal fully ionized plasma”, TVT, 58:3 (2020), 323–326 ; High Temperature, 58:3 (2020), 305–308 |
2
|
|
2019 |
6. |
A. L. Khomkin, A. S. Shumikhin, “Conductivity of nonideal fully ionized plasma: Comparison of calculation results by the molecular dynamics method and model approach”, TVT, 57:4 (2019), 501–508 ; High Temperature, 57:3 (2019), 462–468 |
3
|
7. |
A. L. Khomkin, A. S. Shumikhin, “Characteristics of interatomic and the ion-atom interaction in gases during the dissociation process”, TVT, 57:1 (2019), 4–10 ; High Temperature, 57:1 (2019), 1–7 |
3
|
|
2018 |
8. |
A. L. Khomkin, A. S. Shumikhin, “Equation of state, composition, and conductivity of supercritical iron vapor in the plasma fluid model”, TVT, 56:4 (2018), 483–489 ; High Temperature, 56:4 (2018), 467–472 |
|
2016 |
9. |
A. L. Khomkin, A. S. Shumikhin, “Electron energy distribution in nonideal coulomb systems: theory and results of a numerical experiment”, TVT, 54:6 (2016), 851–857 ; High Temperature, 54:6 (2016), 796–801 |
11
|
|
2015 |
10. |
A. L. Khomkin, A. S. Shumikhin, “The degree of ionization near critical points of classical Coulomb systems”, TVT, 53:5 (2015), 645–648 ; High Temperature, 53:5 (2015), 609–612 |
8
|
|
2014 |
11. |
A. L. Khomkin, A. S. Shumikhin, “Equation of State, Composition, and Conductivity of Dense Metal Vapor Plasma”, TVT, 52:3 (2014), 335–344 ; High Temperature, 52:3 (2014), 328–336 |
20
|
|
2013 |
12. |
A. L. Khomkin, A. S. Shumikhin, “Thermodynamic and transport properties of cesium vapors on binodal and in its vicinity”, TVT, 51:5 (2013), 663–669 ; High Temperature, 51:5 (2013), 594–600 |
10
|
13. |
A. L. Khomkin, L. G. D'yachkov, A. S. Shumikhin, “Studies on nonideal plasma published in the pages of the journal Teplofizika Vysokikh Temperatur (High Temperature) for the last 50 years (1963–2012): A bibliographic review”, TVT, 51:3 (2013), 326–344 ; High Temperature, 51:3 (2013), 287–305 |
7
|
|
2012 |
14. |
A. L. Khomkin, A. S. Shumikhin, “An ion-molecular chemical model of dense aluminum vapor plasma”, TVT, 50:3 (2012), 329–336 ; High Temperature, 50:3 (2012), 307–314 |
16
|
15. |
Yu. A. Vyzhol, A. N. Zhorova, I. A. Mulenko, A. L. Khomkin, “Solution of the kinetic Boltzmann equation for a fully ionized plasma with applying the methods of computer algebra”, Zh. Vychisl. Mat. Mat. Fiz., 52:9 (2012), 1700–1706 |
|
2011 |
16. |
Yu. A. Vyzhol, A. N. Zhorova, I. A. Mulenko, A. L. Khomkin, “Application of computer algebra for the calculation of bracket integrals”, Zh. Vychisl. Mat. Mat. Fiz., 51:10 (2011), 1867–1882 ; Comput. Math. Math. Phys., 51:10 (2011), 1756–1770 |
2
|
|
2004 |
17. |
A. L. Khomkin, I. A. Mulenko, A. S. Shumikhin, “Basic chemical models of nonideal atomic plasma”, TVT, 42:6 (2004), 835–842 ; High Temperature, 42:6 (2004), 842–850 |
16
|
|
2003 |
18. |
A. L. Khomkin, I. A. Mulenko, “Phase transition in size- and charge-asymmetric model electrolytes”, TVT, 41:5 (2003), 659–663 ; High Temperature, 41:5 (2003), 576–580 |
3
|
19. |
A. L. Khomkin, I. A. Mulenko, “Free energy of nonideal atomic plasma”, TVT, 41:3 (2003), 327–333 ; High Temperature, 41:3 (2003), 275–281 |
6
|
|
2001 |
20. |
E. I. Asinovskii, E. N. Oleinikova, A. L. Khomkin, “Van der Waals model of thermal dusty plasma”, TVT, 39:6 (2001), 853–857 ; High Temperature, 39:6 (2001), 789–793 |
2
|
21. |
I. A. Mulenko, E. N. Oleinikova, V. B. Solovei, A. L. Khomkin, “Wide-range model of mixture for chemically reacting nonideal gases and composite plasma”, TVT, 39:1 (2001), 13–25 ; High Temperature, 39:1 (2001), 9–21 |
2
|
|
2000 |
22. |
E. V. Zaika, I. A. Mulenko, A. L. Khomkin, “The electrical conductivity of a fully ionized magnetic plasma with screened interaction between charges”, TVT, 38:6 (2000), 853–861 ; High Temperature, 38:6 (2000), 821–828 |
2
|
23. |
V. S. Vorob'ev, I. A. Mulenko, A. L. Khomkin, “The importance of excited states in the thermodynamics of partially ionized plasma”, TVT, 38:4 (2000), 533–538 ; High Temperature, 38:4 (2000), 509–514 |
3
|
24. |
E. V. Zaika, I. A. Mulenko, A. L. Khomkin, “Electrical conductivity of fully ionized nonideal plasma with screened interaction between charges”, TVT, 38:1 (2000), 5–11 ; High Temperature, 38:1 (2000), 1–7 |
6
|
|
1999 |
25. |
I. A. Mulenko, V. B. Solovei, A. L. Khomkin, V. N. Tsurkin, “The temperature dependence of virial coefficients in chemically reacting systems”, TVT, 37:3 (1999), 518–521 ; High Temperature, 37:3 (1999), 494–497 |
4
|
|
1996 |
26. |
Yu. A. Vyzhol, V. M. Grodnov, I. A. Mulenko, A. L. Khomkin, “The equilibrium properties of plasma of metal vapors in view of interaction of molecular particles”, TVT, 34:6 (1996), 853–866 ; High Temperature, 34:6 (1996), 841–854 |
|
1995 |
27. |
G. P. Vlasov, I. A. Mulenko, A. L. Khomkin, “Thermodynamic functions of nonideal plasma of alkali metal vapors”, TVT, 33:2 (1995), 200–209 ; High Temperature, 33:2 (1995), 198–207 |
|
1991 |
28. |
I. A. Mulenko, A. L. Khomkin, “Решение уравнения Больцмана для полностью ионизованной плазмы с короткодействующим потенциалом взаимодействия между зарядами”, TVT, 29:6 (1991), 1234–1236 |
1
|
29. |
I. A. Mulenko, A. L. Khomkin, “Electron–ion pairs in thermodynamics of nonideal Coulomb systems and plasmas”, TVT, 29:1 (1991), 72–78 ; High Temperature, 29:1 (1991), 68–74 |
|
1990 |
30. |
A. M. Belyaev, V. S. Vorob'ev, A. L. Khomkin, “Broad-range equation of state of water”, TVT, 28:3 (1990), 467–472 ; High Temperature, 28:3 (1990), 348–352 |
|
1988 |
31. |
A. L. Khomkin, B. P. Shelyuhaev, “Ionization equilibrium and energy-balance of electrons in an atomic gas with metal vapor impurity under conditions of interaction with a laser-beam”, TVT, 26:6 (1988), 1066–1071 ; High Temperature, 26:6 (1988), 818–822 |
|
1984 |
32. |
V. S. Vorob'ev, A. L. Khomkin, “Theory of breakdown of molecular gases by laser radiation near a metal surface”, Kvantovaya Elektronika, 11:11 (1984), 2221–2226 [Sov J Quantum Electron, 14:11 (1984), 1478–1481 ] |
|
1981 |
33. |
A. L. Khomkin, “Quasi-bound electron-states and their localization in plasma with strong coulomb interaction”, TVT, 19:4 (1981), 673–679 ; High Temperature, 19:4 (1981), 489–493 |
|
1978 |
34. |
A. L. Khomkin, “К расчету термодинамических функций, состава и электропроводности плазмы инертных газов”, TVT, 16:1 (1978), 37–42 |
2
|
|
1977 |
35. |
V. S. Vorob'ev, A. L. Khomkin, “К вопросу о составе равновесной плазмы”, TVT, 15:6 (1977), 1304–1306 |
36. |
V. S. Vorob'ev, A. L. Khomkin, “Электрон-ионные коррелированные пары в плазме и их влияние на электропроводность”, TVT, 15:1 (1977), 188–191 |
1
|
|
1976 |
37. |
V. S. Vorob'ev, A. L. Khomkin, “Nearest-neighbor approximation in the thermodynamics of coulomb systems and plasmas”, TMF, 26:3 (1976), 364–375 ; Theoret. and Math. Phys., 26:3 (1976), 246–254 |
8
|
38. |
V. S. Vorob'ev, A. L. Khomkin, “Thermodynamics of Coulomb systems”, TVT, 14:1 (1976), 204–207 ; High Temperature, 14:1 (1976), 181–183 |
|
1974 |
39. |
A. L. Khomkin, “Об электропроводности плазмы аргона и ксенона”, TVT, 12:4 (1974), 879–881 |
|
1972 |
40. |
V. S. Vorob'ev, A. L. Khomkin, “Особенности дебаевского экранирования и уравнение состояния частично ионизованной плазмы”, TVT, 10:5 (1972), 939–949 |
1
|
|
1971 |
41. |
V. S. Vorob'ev, A. L. Khomkin, “Canonical transformation method in the thermodynamics of a partially ionized plasma”, TMF, 8:1 (1971), 109–118 ; Theoret. and Math. Phys., 8:1 (1971), 708–714 |
6
|
|
Organisations |
|
|
|
|