Bogolyubov Institute for Theoretical Physics
of the National Academy of Sciences of Ukraine

Department of Theory of Nonlinear Processes in Condensed Matter
Articles in journals, other publications
  1. V.M. Loktev, Yu.G. Pogorelov. Impurities and Dopants in High-Tc Superconductors . - /ІТФ ім.. М.М. Боголюбова/. - Київ. Академперіодика, 2015, 223 с.
  2. Гомонай Е.В., В.М. Локтев. Использование обобщенных уравнений Ландау-Лифшица для описания динамики многоподрешеточного антиферромагнетика в присутствии спин-поляризованного тока. ФНT. - 2015. - 41, № 9. - С. 898-907.
  3. Pogorelov Yu.G., V.M. Loktev. Electric bias control of impurity effects in bilayer graphene. Phys. Rev. В. - 2015. - 92. - P. 075401-9.
  4. Eremko A.A., L.S. Brizhik, V.M. Loktev. Spin-eigen states of Dirac equation for quasi-two-dimensional electrons. Annals of Phys. - 2015. - 361, No 10. - P. 423-439.
  5. L. Brizhik, A.P. Chetverikov, V. Ebeling, G. Röpke, M.G. Velarde. Bound states of electrons in harmonic and anharmonic lattices. Chapter in: J.F.R. Archilla, N. Jiménez, V.J. Sánchez-Morcillo, L.M. García-Raffi (eds.) Quodons in Mica: Nonlinear Localized Travelling Excitations in Crystals, Springer Series in Materials Science, 2015, Vol. 221, Pp. 291—319. DOI: 10.10L.
  6. L. Brizhik. Influence of electromagnetic field on soliton mediated charge transport in biological systems. Electromagn. Biol. Med., 2015, Vol. 34, No. 2, Pages 123-132;
  7. Giuliani L., D'Emilia E., Lisi A., Grimaldi S., Brizhik L. and Del Giudice E. Copper ion fluxes through the floating water bridge under strong electric potential. Electromagn. Biol. Med., 2015, v. 34(2), pp. 167-169.
  8. Єремко О.О. Спiновi стани квазiдвовимiрних електронiв, Доповiдi НАН України, 2015, No. 4, стор. 65-70, (2015).
  9. S.G. Sharapov. Thermodynamic properties of the 2+1-dimensional Dirac fermions with broken time-reversal symmetry, J. Phys. A: Math. Theor. 48, 365002 (2015).
  10. V.P. Gusynin, S.G. Sharapov, and A.A. Varlamov. Spin Nernst effect and intrinsic magnetization in two-dimensional Dirac materials, Low Temperature Physics/Fizika Nizkikh Temperatur, V.41, No.5, 445-456 (2015).
  11. Zolotaryuk A.V., Zolotaryuk Y. A zero-thickness limit of multilayer structures: a resonant-tunnelling δ′-potential, J. Phys. A: Math. Theor. 48, 035302 (14pp) (2015).
  12. Zolotaryuk A.V., Zolotaryuk Y. Controllable resonant tunnelling through single-point potentials: A point triode, Phys. Lett. A 379, 511-517 (2015).
  13. Zolotaryuk A.V. An explicit realization of resonant tunnelling δ″-potentials, J. Phys. A: Math. Theor. 48, 255304 (17pp) (2015).
  14. Y. Zolotaryuk and I.O. Starodub. Fluxon mobility in an asymmetric SQUID array, Phys. Rev. E. 91, 013202 (9 pp) (2015).
  15. R.L. Pylypchuk and Y. Zolotaryuk. Discrete breathers in an one-dimensional array of magnetic dots, Fiz. Nizk. Temp. 41, 942-948 (2015) [Low Temp. Phys. 41, 733-739
  16. N.I. Grigorchuk. Acoustical wave emission from embedded noble nanoparticles induced by ultrashort laser pulses, Eur. Phys. J. B, (2015) 88: 29, p. 1-9.
  17. М.І. Григорчук, В.Г. Карпов. Нуклеація плазмонних резонансних наночастинок сфероїдальної форми, Журнал Фізичних досліджень, т. 19, № 3 (2015) 3701 (10 с.).
  18. V.N. Ermakov, S.P. Kruchinin, T. Prushke, J.K. Freerics. Thermoelectricity in tunneling nanostructures. Phys.Rev. B 92, 155431 (2015)
  19. E.A. Ponezha. Relaxation times and correlation functions under the influence of cross-correlated сolored noises for the model of resonant tunneling, Укр. фіз. журн., 2015, Т.60, №7, c. 657-664
Articles in journals, other publications
  1. H. Gomonay, V. Loktev. Спинтроника антиферромагнетиков. ФНТ, 40, № 1, 22-47 (2014).
  2. Н.Gomonay, S.Kondovich, V. Loktev. Shape-induced anisotropy in antiferromagnets. JMMM, 354, 125-135 (2014)
  3. V.P. Gusynin, V.M. Loktev, I.A. Luk'yanchuk, S.G. Sharapov, A.A. Varlamov. Quantum oscillations as the tool for study new functional materials. Low Temp. Phys. 40, № 4, 355-366 (2014).
  4. Г.Ю. Лаванов, В.М. Калита, В.М. Локтев. Изоструктурный магнитный фазовый переход и магнитокалорический эффект в изинговском антиферромагнетике. ФНТ, 40, № 9, 1053-1061 (2014).
  5. L. Brizhik. Effects of magnetic fields on soliton mediated charge transport in biological systems. J. Adv. Phys. 2014, 6, 1191-1201.
  6. L. Brizhik, B. Piette, W. Zakrzewski. Donor-acceptor electron transport mediated by solitons. Phys.Rev. E 90 (2014) 052915 DOI: http://dx.doi.org/10.1103/PhysRevE.90.052915
  7. L. Brizhik, A. Eremko, B. Piette, W. Zakrzewski. Thermal enhancement and stochastic resonance of polaron ratchet. Phys.Rev. E, 2014, 89, 062905. DOI: http://dx.doi.org/10.1103/PhysRevE.89.062905
  8. A.P. Demchenko, J. Heldt, J. Waluk, P.-T. Chou, P. K. Sengupta, L. Brizhik, J. C. del Valle. Michael Kasha: From photochemistry and flowers to music and spectroscopy. Angew.Chem. Int. Ed., 2014, 53, 2-11. DOI: 10.1002/anie.201405222.
  9. L. Brizhik, A. Foletti. Biophysical aspects of complexity related to health and disease in the light of nonlinear quantum physics. J. Biol. Reg. Homeost. Agents, 28, No. 3, (2014) 367-376.
  10. I.O. Стародуб та Я.О. Золотарюк. Випромінювання при взаємодії флюксона з прямокутною домішкою в двовимірному джозефсонівському переході, Науковий вісник Ужгородського університету. Серія Фізика., 2014, № 35, c. 196-203.
  11. Y. Zolotaryuk. Stability of Mode-Locked Kinks in the AC Driven and Damped Sine-Gordon Lattice, in Localized Excitations in Nonlinear Complex Systems, Nonlinear Systems and Complexity (Springer), 2014, vol.7, p. 237-250.
  12. I.O. Starodub, Y. Zolotaryuk. Radiation emission due to fluxon scattering on inhomogeneity in large two-dimensional Josephson junction, Phys. Rev. B, 2014, 90, 224509.
  13. V.P. Gusynin, S.G. Sharapov, A.A.Varlamov. Anomalous thermo-spin effect in the low-buckled Dirac materials, Phys. Rev. B 90, 155107 (2014).
  14. N.I. Grigorchuk. Sensitivity of surface plasmon resonances in spheroidal metal nanoparticles, Eur. Phys. J. B, 2014, 87: 252, p. 1-6.
  15. N.I. Grigorchuk. Plasmon resonance sensitivity in fine metal particle, Condensed Matter Physics, 2014, 17, № 1, 13701, p. 1-6.
  16. N.I. Grigorchuk, V.G. Karpov. Plasmon mediated non-photochemical nucleation of nanoparticles by circulary polarized light, Appl. Phys. Lett. 2014, 105, 223103, p. 1-4.
  17. O. Gamayun. Quantum Boltzmann equation for a mobile impurity in a degenerate Tonks-Girardeau gas, Phys. Rev. A 89, 063627 (2014)
  18. O. Gamayun, O. Lychkovskiy, V. Cheianov. Kinetic theory for a mobile impurity in a degenerate Tonks-Girardeau gas, Phys. Rev. E 90, 032132 (2014)
  19. Е.А. Понежа. Влияние внешних шумов на корреляционную функцию интенсивности в процессе резонансного туннелирования, Металлофиз. и нов. технол., 2014, 36, № 6 c. 713-722.
Preprints
  1. V.G. Karpov, N.I. Grigorchuk. Light induced nucleation of metallic nanoparticles with frequency controlled shapes, 2014, ArXiv:1403.1518G, p. 1-5.
  2. O. Gamayun, A. G. Pronko, M. B. Zvonarev. Impurity Green's function of the one-dimensional Fermi-gas, 2014, arXiv:1410.1502
Articles in journals, other publications
  1. H. Gomonay, V. Loktev. Peculiarities of stochastic motion in AFM nanoparticles. Eur. Phys. J. 216, (2013).
  2. Yu.B. Gaididei, V.M. Loktev, A.G. Naumovets, A.G. Zagorodny. Adatom interaction effects in surface diffusion, Condensed Matter Physics, 16, No. 1, 13604: 1-14 (2013).
  3. Yu. Skrypnyk, V. Loktev. Cross-type spectrum rearrangement in grapheme with weakly bound impurity electromagnetic effects. J. of Phys. C 25, 195301-7 (2013).
  4. Yu.G. Pogorelov, V.M. Loktev. Impurity effects on electronic transport in ferropnictide superconductors. Phys. Rev. B 88, 224518-8 (2013)
  5. С.В. Кондович, О.В. Гомонай, В.М. Локтєв. Магнітна динаміка мультифероїка з АФМ прошарком. УФЖ 58, 588-594 (2013).
  6. A.A. Eremko, V.M. Loktev. Spin sensitivity electron transmission through helical potentials. Phys. Rev. В 88, 165409-5 (2013).
  7. А.И. Бугрий, В.М. Локтев. К теории неоднородной бозе-ейнштейновской конденсации магнонов в железо-итриевом гранате, Физика низких температур, т.39, №12, сc. 1333-1345 (2013).
  8. L. Brizhik, A.P. Chetverikov, V. Ebeling, G. Röpke, M.G. Velarde. Stabilizing role of lattice anharmonicity in the bisoliton dynamics. Ukr. J. Phys., 58, No 6, 2013, 562-572.
  9. L. Brizhik. Solitons mechanism of weak photon emission from biological systems. Nanoscience and Nanotechnology, 3 (2013) 120050570 (10 pp).
  10. L. Brizhik, A. Foletti. Fisica non-lineare ed aspetti biofisici della complessità in salute e malatti. Medicina Funzionale, 2, 2013, 24-32.
  11. A.V. Zolotaryuk and Y. Zolotaryuk. Intrinsic resonant tunneling properties of the one-dimensional Schroedinger operator with a delta derivative potential, Int. J. Mod. Phys. B, Vol. 27 (2013) 1350203 (28 pages).
  12. A.V. Zolotaryuk. Single-point potentials with total resonant tunneling, Phys. Rev. A, 87 (2013) 052121 (9 pages).
  13. I.O. Starodub, Y. Zolotaryuk. Fluxon scattering on a stripe-like impurity in a two-dimensional Josephson junction, Ukr. J. Phys., 2013, Vol. 58, No. 7, c. 687-696.
  14. I.О. Стародуб, Я.О. Золотарюк. Випромінювання при взаємодії флюксона з прямокутною домішкою в двовимірному джозефсонівському переході. Науковий вісник Ужгородського університету. Серія Фізика. 2013.
  15. T. Timusk, J.P. Carbotte, C.C. Homes, D.N. Basov, and S.G. Sharapov. Three-dimensional Dirac fermions in quasicrystals as seen via optical conductivity. Phys. Rev. B 87, 235121 (2013).
  16. N.I. Grigorchuk. Temperature dependence of plasmon resonances in spheroidal metal nanoparticles, Condensed Matter Physics, 2013, 16, № 3, 33706, с. 1-18.
  17. N.I. Grigorchuk. Plasmon resonances sensitivity in fine metal particles, Condensed Matter Physics, 2013, Vol. 16, № 4, с. 1-6.
  18. V.N. Ermakov, S.P. Cruchinin, H.T. Kim, T. Pruchke. Thermoelectric properties of molecular nanostructures. NSTI, Nanotech. 2, 2013, 724-727.
  19. A.O. Slobodeniuk, I.P. Levkivskyi, E.V. Sukhorukov. Equilibration of quantum Hall edge states by an Ohmic contact, Phys. Rev. B, 2013, Vol. 88, Issue 16, P.165307-1-5.
  20. O. Gamayun, N. Iorgov, O. Lisovyy. How instanton combinatorics solves Painlevé VI, V and III's, J. Phys. A: Math. Theor. 46 (2013) 335203
Articles in journals, other publications
  1. В.М. Локтев, В.М. Турковский. К теории псевдощелевого состояния в низкоразмерных сверхпроводниках с анизотропным параметром порядка. Доповіді НАН України № 1, 70-75 (2012).
  2. H.M. Gomonay, R.V. Kunitsyn, V.M. Loktev. Symmetry and macroscopic dynamics of antiferromagnetic materials in the presence of spin-polarized current. Phys. Rev. B 85, 134446-10 (2012).
  3. H.M. Gomonay, S.V. Kondovich, V.M. Loktev. Magneto-elastic coupling and possibility of spintronic electromagnetic effects. Low Temp. Phys. 38, No 7, 801-807 (2012).
  4. V.M. Loktev, Yu.G. Pogorelov. Impurity and vacancy effects in graphene. Low Temp. Phys. 38, No 8, 993-1000 (2012).
  5. В.М. Калита, И.М. Иванова, В.М. Локтев. Квантовые еффекты при намагничивании легкоосного ферромагнетика со спином S=1. ТМФ 173, № 2, 333-351 (2012).
  6. M.G. Velarde, L. Brizhik, A.P. Chetverikov, L. Cruzeiro, V. Ebeling, G. Röpke. Quartic Lattice Interactions, Soliton-like Excitations, and Electron Pairing in One-Dimensional Anharmonic Crystals. Int. J. Quant. Chem., 2012, 112, 2591-2598. DOI: 10.102/qua.23282
  7. Л.С. Брижик, П.І. Голод. Солітони і нелінійні явища у фізиці. Винахідник і раціоналізатор, н. 2, 19-23, 2012.
  8. L. Brizhik, A.P. Chetverikov, V. Ebeling, G. Röpke, M.G. Velarde. Electron pairing and Coulomb repulsion in one-dimensional anharmonic lattices. Phys. Rev. B, 2012. DOI: 10.1103/PhysRevB.85.245105 -
  9. А.А. Варламов, А.В. Кавокин, И.А. Лукьнчук, С.Г. Шарапов. Аномальные термоэлектрические и термомагнитные свойства графена, УФН, 182, 1229-1234 (2012).
  10. S.G. Sharapov and A.A. Varlamov. Anomalous growth of thermoelectric power in gapped graphene, Phys. Rev. B 86, 035430 (2012).
  11. E.V. Gorbar, V.P. Gusynin, A.B. Kuzmenko, and S.G. Sharapov. Magneto-optical and optical probes of gapped ground states in bilayer graphene, Phys. Rev. B 86, 075414 (2012).
  12. N.I. Grigorchuk. Plasmon resonant light scattering on spheroidal metallic nanoparticle embedded in a dielectric matrix. Eur. Phys. Lett., Vol. 97, 45001(6 p.) (2012).
  13. V.G. Karpov, M. Nardone, and N.I. Grigorchuk . Nucleation of plasmonic resonance nanoparticles. Phys. Rev. B, Vol. 86, 075463(5 p.) (2012).
  14. N.I. Grigorchuk. Resonance plasmon linewidth oscillations in spheroidal metallic nanoparticle embedded in a dielectric matrix. Journal of Applied Physics Vol. 112, 064306 (11 p.)(2012).
  15. N.I. Grigorchuk. Effect of Surface Plasmon Linewidth Oscillations on Optical Properties of Metal Nanoparticle Embedded in a Dielectric Media. The Journal of Physical Chemistry C Vol. 116, 23704−23712 (2012).
  16. N.I. Grigorchuk. Radiative Damping of Surface Plasmon Resonance in Spheroidal Matallic Nanoparticle embedded in a Dielectric Medium. Journal of Optical Society of America B, Vol. 29, No. 12, 3404−3411 (2012).
  17. A.V. Zolotaryuk and Y. Zolotaryuk. Controlling a resonant transmission across the δ'-potential: the inverse problem, J. Phys. A: Math. Theor. 44 (2011) 375305 (17p)
  18. P.L. Christiansen, A. V, Savin, and A.V. Zolotaryuk. Lattice stretching bistability and dynamic heterogeneity, Phys. Rev. E 85 (2012) 046601 (11pp).
  19. I.O. Starodub, Y. Zolotaryuk. Scattering of quasi-one-dimensional solitons on impurities in large Josephson junctions. Physics Letters A 376 (2012) 3101-3107.
  20. Y. Zolotaryuk, Asymmetric ac fluxon depinning in a Josephson junction array: A highly discrete limit. Physical Review E 86 (2012) 026604
  21. O. Gamayun, N. Iorgov, O. Lisovyy, Conformal field theory of Painleve VI, J. of High Energy Phys., Vol. 2012, No. 10 (2012), 38.
  22. O.V. Gamayun, E.V. Gorbar, V.P. Gusynin. Magnetic Field Driven Instability in Planar NJL Model in Real-Time Formalism, Phys. Rev. D 86, 065021 (2012).
Articles in journals, other publications
  1. V.M. Loktev, M.D. Tomchenko. On the mutual polarization of two Не4 atoms, J. Phys. B.: At. Mol. Opt. Phys. V. 44, 035006 (2011).
  2. H.M. Gomonay, I.G. Kornienko, V.M. Loktev. Theory of magnetization in multiferroics: Competition between ferromagnetic and antiferromagnetic domains. Phys. Rev. B 83, 054424-11 (2011).
  3. Yu.V. Skrypnyk, V.M. Loktev. Metal-insulator transition in hydrogenated graphene as manifestation of quasiparticle spectrum rearrangement of anomalous type. Phys. Rev. B 83, 085421-7 (2011).
  4. В.М. Калита, В.М. Локтєв. К теории квантовых фазовых переходов в Ван-флековских антиферромагнетиках типа DTN. Письма в ЖЭТФ 93, № 9, 592-596 (2011).
  5. V.M. Loktev, Yu.G. Pogorelov. Superconducting junctions from doped nonsuperconducting CuO2 layers. Phys. Rev. B 83, 132503-4 (2011).
  6. V.M. Loktev, V.M. Turkowski. Possible high-temperature superconductivity in multilayer graphane: can the cuprates be beaten? J. Low Temp. Phys. 164, No 6, 264-271 (2011).
  7. Ю.В. Скрипник, В.М. Локтев. О возможности формирования области с аномальной дисперсией в электронном спектре примесного графена. Письма в ЖЭТФ 93, № 12, 787-791 (2011).
  8. Yu.G. Pogorelov, M.C. Santos, V.M. Loktev. Impurity effects in quasiparticle spectrum of high-Tc superconductors. Low Temp. Phys. 37, No 8, 803-828 (2011).
  9. A.O. Slobodeniuk, S.G. Sharapov, V.M. Loktev. Density of states of relativistic and nonrelativistic two-dimensional electron gases in a uniform magnetic and Aharonov-Bohm fields. Phys. Rev. B 84, 125306-(2011).
  10. Yu.G. Pogorelov, M.C. Santos, V.M. Loktev. Specifics of impurity effects in ferropnictide superconductors. Phys. Rev. B 84, 145110-9 (2011).
  11. A.O. Slobodeniuk, S.G. Sharapov, V.M. Loktev. Electronic density of states for two-dimensional system in uniform magnetic and Aharonov-Bohm fields. Low Temp. Phys. 37, No 11, 1181-1189 (2011).
  12. Ю.В. Скрипник, В.М. Локтев. Резонанс скорости Ферми в слабо неидеальном графене. Письма в ЖЭТФ 94, № 7, 605-609 (2011).
  13. H. V. Gomonay, I. G. Korniienko, V.M. Loktev. On the theory of stress-magnetic field phase diagram of the finite size multiferroics: competition between ferro- and antiferromagnetic domains. Ukr. J. Phys.- 2011. - 56, №7. - P. 659-668.
  14. Попов В.В., Гомонай Е.В., Бержанский В.Н., Бойко В.А. Изменение механизма перемагничивания торсионно напряженного аморфного микропровода под действием постоянного тока Ученые записки Таврического национального университета имени В.И. Вернадского. Серия Физико-математические науки. Т. 24 (63). 2011 г. № 2. С. 141-152
  15. A.V. Zolotaryuk and Y. Zolotaryuk. Controlling a resonant transmission across the δ'-potential: the inverse problem, J. Phys. A: Math. Theor. 44 (2011) 375305 (17p)
  16. M.G. Velarde, L. Brizhik, A.P. Chetverikov, L. Cruzeiro, V. Ebeling, G. Ropke. On Electron Pairing In One-Dimensional Anharmonic Lattices. Int. J. Quant. Chem., V. 111, Issue 10, 2011, 5-10. Article first visibility online: 8 MAR 2011. DOI: 10.1002/qua.23008
  17. R.P. Bajpai, L. Brizhik, E. Del Giudice, F. Finelli, F.-A. Popp, K.-P. Schlebusch. Light as a trigger and a probe of the internal dynamics of living organisms. J. Acupunct. Meridian Studies 2011, v. 3, No 4, 291-297.
  18. L.S. Brizhik, On the role and impact of electromagnetic fields in ecosystems, Int. J. Design & Nature and Ecodyn., v.6, issue 3, 2011, 64-73.
  19. L.S. Brizhik, On the nonthermal effects of electromagnetic fields on charge transport processes in ecosystems. Ecosystems and Sustainable Development, 8 (2011), 3-11. -
  20. L.S. Brizhik, E. Del Giudice, A. Tedeschi, V.L. Voeikov, The role of water in the information exchange between the components of an ecosystem, Ecol. Modell. 2011, 222, 2869-2877; doi:10.1016/j.ecolmodel.2011.05.017
  21. N.I. Grigorchuk, P.M. Tomchuk. Optical and transport properties of spheroidal nanoparticles with account for the surface effect. Phys. Rev. B, 84, 085448 (14 pages) (2011).
  22. N.I. Grigorchuk. Sound generation by spheroidal metallic nanoclusters embedded in transparent matrix under the action of laser pulses. Eur. Phys. J, B 80, 371-378 (2011).
  23. Н.И. Григорчук. Акустические колебания сферической металлической наночастиці в диєлектрической матрице под действием ультракороткого лазерного импульса. Физика низких температур, 37, № 4, 422-431 (2011).
  24. A.V. Zolotaryuk and Y. Zolotaryuk. Controlling a resonant transmission across the δ'-potential: the inverse problem, J. Phys. A: Math. Theor. 44 (2011) 375305 (17p)
  25. Y. Zolotaryuk and M.M. Osmanov. Directed motion of domain walls in biaxial ferromagnets under the influence of periodic external magnetic fields / Zolotaryuk Y., Osmanov M.M. // Eur. Phys. J B -2011- v.79 -P. 257-262.
  26. Я.О. Золотарюк, Направлена динаміка флюксонів у джозефсонівських контактах під впливом періодичних збурень / Золотарюк Я.О.// Доповіді НАН України, серія фізична - 2011 - № 4 -с. 67-72 (2011).
  27. Ермаков В.Н., Понежа Е.А. Влияние цветного шума на время релаксации в туннельных двухбарьерных наноструктурах // Металлофиз. Новейшие технол. - 2011. - Т.33, № 1. - С. 45-55
Articles in journals, other publications
  1. В.М. Калита, В.М. Локтев. К теории намагничивания димеризованных магнетиков. Письма в ЖЭТФ 91, № 4, 196-200 (2010).
  2. H.V. Gomonay, I.G. Kornienko, V.M. Loktev. Possibility of soft-matter effects in solids. Cond. Matt. Physics 13, No 2, 23701-9 (2010).
  3. H.V. Gomonay, V.M. Loktev. Spin transfer and current-induced scattering in antiferrodielectrics. Phys. Rev. B 81, 144427-10 (2010).
  4. В.М. Локтев, М.Д. Томченко. О взаимной поляризации двух атомов Не4. Доповіді НАН України № 5, 76-81 (2010).
  5. A.O. Slobodeniuk, S.G. Sharapov, and V.M. Loktev. Aharonov-Bohm effect relativistic and non-relativistic two-dimensional electron gases: A comparative study. Phys. Rev. B 82, 144427-11 (2010).
  6. Yu.V. Skrypnyk, and V.M. Loktev. Electrical conductivity in graphene with point defects. Phys. Rev. B 82, 075316-9 (2010).
  7. В.М. Калита, В.М. Локтев. К теории квантовых фазовых переходов в димеризованных магнетиках. ФНТ 36, № 8/9, 838-845 (2010).
  8. V.M. Loktev, M.D. Tomchenko. Electromagnetic and phonon modes for superfluid He4 with a disk resonator. Ukr. J. Phys. 48, No 9, 1-10 (2010).
  9. H.V. Gomonay, V.M. Loktev. Magnetic structures of δ-O2 resulting from competition of interplane exchange interactions. Phys. Rev. B 82, 134422-7 (2010).
  10. V.M. Loktev, V.M. Turkowski. Superconducting properties of a two-dimensional doped semiconductor. Low Temp. Phys. 36, No 10|/11, 1244-1247 (2010).
  11. V.M. Loktev, M.D. Tomchenko. Тheory of a supernarrow absorption line in the spectrum of a disk-shaped microwave resonator. Phys. Rev. B 82, 172501-4 (2010).
  12. L. Brizhik, A. Eremko, B. Piette, W. Zakrzewski. Ratchet dynamics of large polarons in asymmetric diatomic molecular chains. J.Phys.:Cond.Matt. 22 (2010) 155105, 9 pp.
  13. L. Brizhik, M. Gulino, R. Grasso, L. Lanzano, F. Musumeci, G. Privitera, A. Scordino, M. Tedesco, A. Triglia. Delayed luminescence from collagen as arising from soliton and small polaron states. Int. J. Quant. Chem., 110, Issue 1, pp. 221-229 (2010). DOI: 10.1002/qua.22010
  14. L. Brizhik, Nonlinear electromagnetic dynamics underlying meridians in living systems. In:Future of Sciences: Interdisciplinary Studies, Universita degli Studi Milano-Bicocca, 2010.
  15. J. P. Carbotte, E.J. Nicol, S.G. Sharapov, Effect of electron-phonon interaction on spectroscopies in graphene, Phys. Rev. B 81, 045419 (2010).
  16. П.М. Томчук, М.І. Григорчук, Д.В. Бутейко. Генерація звуку металевими нанокластерами в діелектричній матриці. УФЖ, 55, № 4, 443-452 (2010).
  17. Y. Bilotsky, N. Grigorchuk, P. Tomchuk, and M. Gasik. Thermo-Acoustics Phenomena in the Metal Nanoparticles System Generated by Ultrashort Laser Pulse. J. Physics. 214, 012050 (2010).
  18. П.М. Томчук, М.І. Григорчук. Генерація моменту імпульсу в асиметричній металевій наночастинці під дією ультракороткого лазерного імпульсу. ЖФД, 14, № 4 (2010).
  19. A.V. Zolotaryuk. Boundary conditions for the states with resonant tunneling across the δ-potential. Phys. Lett. A 374, 1636-1641 (2010)
  20. A.V. Zolotaryuk. Point interactions of the dipole type defined through a three-parametric power regularization fields. J. Phys. A. Math. Theor. 43, 105302 (2010)
  21. М.М. Османов, Я.О. Золотарюк. Направлений рух доменних стінок у феромагнетиках під впливом змінних магнітних полів. Вісник Львівського університету. Серія фізична, вип. 45 (2010)
  22. В.И. Подольская, Л.Н. Якубенко, З.Р. Ульберг, В.Н. Ермаков, Н.И. Грищенко. Влияние слабых импульсных электрических полей на поверхностные и деструктивные свойства бактерий Pseudomonas. Коллоидный журнал, 2010, том 72, № 6, с. 822-829
  23. О.О. Понежа Вплив зовнішнього шуму на процес релаксації в бістабільних тунельних системах, УФЖ, Т. 55, № 2, 244-251 (2010)
Preprints
  1. Y. Zolotaryuk, M.M. Osmanov. Directed motion of domain walls in biaxial ferromagnets under the influence of periodic external magnetic fields. arxiv: 1007.0090 (2010)