DC Field | Value | Language |
dc.contributor.author | Маркович, Б. | |
dc.contributor.author | Markovych, B. | |
dc.date.accessioned | 2020-02-27T08:51:51Z | - |
dc.date.available | 2020-02-27T08:51:51Z | - |
dc.date.created | 2018-02-26 | |
dc.date.issued | 2018-02-26 | |
dc.identifier.citation | Markovych B. Investigation of effective potential of electron-ion interaction in semibounded metal / B. Markovych // Mathematical Modeling and Computing. — Lviv : Lviv Politechnic Publishing House, 2018. — Vol 5. — No 2. — P. 184–192. | |
dc.identifier.uri | https://ena.lpnu.ua/handle/ntb/46140 | - |
dc.description.abstract | Подано чисельні розрахунки ефективного потенціалу електрон–іоної взаємодії в напівобмеженому металі
(калії) з урахуванням поправки на локальне поле у формі Хаббарда з використанням локального псевдопотенціалу Красько–Гурського.
Досліджено вплив поверхні поділу “метал–вакуум” та апроксимації для поправки на локальне
поле на поведінку ефективного потенціалу електрон–іонної взаємодії. | |
dc.description.abstract | The effective potential of the electron–ion interaction in a semibounded metal (potassium) is calculated numerically, taking into account the local field correction in the
Hubbard form, using the local pseudopotential of Krasko–Gursky. The influence of the
metal/vacuum interface and the approximation for the local field correction on the behavior of the effective potential of the electron–ion interaction is investigated. | |
dc.format.extent | 184-192 | |
dc.language.iso | en | |
dc.publisher | Lviv Politechnic Publishing House | |
dc.relation.ispartof | Mathematical Modeling and Computing, 2 (5), 2018 | |
dc.subject | ефективна електрон–іонна взаємодія | |
dc.subject | напівобмежений метал | |
dc.subject | поправка на локальне поле | |
dc.subject | effective electron–ion interaction | |
dc.subject | semibounded metal | |
dc.subject | local field correction | |
dc.title | Investigation of effective potential of electron-ion interaction in semibounded metal | |
dc.title.alternative | Дослідження ефективного потенціалу електрон-іонної взаємодії в напівобмеженому металі | |
dc.type | Article | |
dc.rights.holder | CMM IAPMM NASU | |
dc.rights.holder | © 2018 Lviv Polytechnic National University | |
dc.contributor.affiliation | Національний університет “Львівська політехніка” | |
dc.contributor.affiliation | Lviv Polytechnic National University | |
dc.format.pages | 9 | |
dc.identifier.citationen | Markovych B. Investigation of effective potential of electron-ion interaction in semibounded metal / B. Markovych // Mathematical Modeling and Computing. — Lviv : Lviv Politechnic Publishing House, 2018. — Vol 5. — No 2. — P. 184–192. | |
dc.relation.references | 1. Vavrukh M. V., Kostrobij P. P., Markovych B. M. Bazisnij pidhid v teoriї bagatoelektronnih sistem. Rastr7, Lviv (2017), (in Ukrainian). | |
dc.relation.references | 2. Kostrobij P. P., Markovych B. M. Semi-infinite metal: perturbative treatment based on semi-infinite jellium. Condensed Matter Physics. 11 (4), 641–651 (2008). | |
dc.relation.references | 3. Kaim S. D. O mnogochastichnom podhode v teorii metallicheskoj poverhnovsti. Ukr. Fiz. Zhurn. 26 (8), 1351–1357 (1981), (in Russian). | |
dc.relation.references | 4. Kostrobij P. P., Markovych B. M. An effective potential of electron-electron interaction in semi-infinite jellium. Condensed Matter Physics. 9 (4), 747–756 (2006). | |
dc.relation.references | 5. Kostrobij P. P., Markovych B. M. Semi-infinite jellium: Thermodynamic potential, chemical potential, and surface energy. Phys. Rev. B. 92 (7), 075441 (2015). | |
dc.relation.references | 6. Kostrobij P. P., Markovych B. M. Semi-infinite jellium: Step potential model. Phys. Rev. B. 93 (15), 155401 (2016). | |
dc.relation.references | 7. Yakibchuk P. M. Calculation of the thermodynamical potential for the electron-ionic model of metal with nonlocal interactions. Condensed Matter Physics. 10, 179–187 (1997). | |
dc.relation.references | 8. Yakibchuk P. M., Shvec V. T. Modelni metodi u fizici metaliv. Lviv. nac. un-t im. Ivana Franka, L’viv (2012), (in Ukrainian). | |
dc.relation.references | 9. Gurskij Z. A., Krasko G. L. Modelnyj psevdopotencial i nekotorye atomnye svojstva shhelochnyh i shhelochnozemelnyh metallov. Doklady Akademii nauk SSSR. 197 (4), 810–813 (1971), (in Russian). | |
dc.relation.references | 10. Krasko G. L., Gurskij Z. A. Ob odnom modelnom psevdopotenciale. Pisma v JETF. 9, 596–601 (1969). | |
dc.relation.references | 11. Gradshtejn I. S., Ryzhik I. M. Tablicy integralov, summ, rjadov i proizvedenij. Nauka, Moscow (1971), (in Russian). | |
dc.relation.references | 12. Kostrobij P. P., Markovych B. M. Semi-infinite metal: thermodynamic potential and effective interionic pair potentials. AIP Conference Proceedings. 1198, 78–86 (2009). | |
dc.relation.references | 13. Mahan G. D. Many-particle physics. Plenum Press, New York (1990). | |
dc.relation.references | 14. Gorobchenko V. D., Maksimov E. G. The dielectric constant of an interacting electron gas. Sov. Phys. Usp. 23 (1), 35–58 (1980). | |
dc.relation.references | 15 Markovych B. M., Zadvorniak I. M. Effective potential of electron-electron interaction in the semiinfinite electron gas with regard for the local-field correction. Ukr. J. Phys. 59 (11), 1107–1113 (2014). | |
dc.relation.referencesen | 1. Vavrukh M. V., Kostrobij P. P., Markovych B. M. Bazisnij pidhid v teorii bagatoelektronnih sistem. Rastr7, Lviv (2017), (in Ukrainian). | |
dc.relation.referencesen | 2. Kostrobij P. P., Markovych B. M. Semi-infinite metal: perturbative treatment based on semi-infinite jellium. Condensed Matter Physics. 11 (4), 641–651 (2008). | |
dc.relation.referencesen | 3. Kaim S. D. O mnogochastichnom podhode v teorii metallicheskoj poverhnovsti. Ukr. Fiz. Zhurn. 26 (8), 1351–1357 (1981), (in Russian). | |
dc.relation.referencesen | 4. Kostrobij P. P., Markovych B. M. An effective potential of electron-electron interaction in semi-infinite jellium. Condensed Matter Physics. 9 (4), 747–756 (2006). | |
dc.relation.referencesen | 5. Kostrobij P. P., Markovych B. M. Semi-infinite jellium: Thermodynamic potential, chemical potential, and surface energy. Phys. Rev. B. 92 (7), 075441 (2015). | |
dc.relation.referencesen | 6. Kostrobij P. P., Markovych B. M. Semi-infinite jellium: Step potential model. Phys. Rev. B. 93 (15), 155401 (2016). | |
dc.relation.referencesen | 7. Yakibchuk P. M. Calculation of the thermodynamical potential for the electron-ionic model of metal with nonlocal interactions. Condensed Matter Physics. 10, 179–187 (1997). | |
dc.relation.referencesen | 8. Yakibchuk P. M., Shvec V. T. Modelni metodi u fizici metaliv. Lviv. nac. un-t im. Ivana Franka, L’viv (2012), (in Ukrainian). | |
dc.relation.referencesen | 9. Gurskij Z. A., Krasko G. L. Modelnyj psevdopotencial i nekotorye atomnye svojstva shhelochnyh i shhelochnozemelnyh metallov. Doklady Akademii nauk SSSR. 197 (4), 810–813 (1971), (in Russian). | |
dc.relation.referencesen | 10. Krasko G. L., Gurskij Z. A. Ob odnom modelnom psevdopotenciale. Pisma v JETF. 9, 596–601 (1969). | |
dc.relation.referencesen | 11. Gradshtejn I. S., Ryzhik I. M. Tablicy integralov, summ, rjadov i proizvedenij. Nauka, Moscow (1971), (in Russian). | |
dc.relation.referencesen | 12. Kostrobij P. P., Markovych B. M. Semi-infinite metal: thermodynamic potential and effective interionic pair potentials. AIP Conference Proceedings. 1198, 78–86 (2009). | |
dc.relation.referencesen | 13. Mahan G. D. Many-particle physics. Plenum Press, New York (1990). | |
dc.relation.referencesen | 14. Gorobchenko V. D., Maksimov E. G. The dielectric constant of an interacting electron gas. Sov. Phys. Usp. 23 (1), 35–58 (1980). | |
dc.relation.referencesen | 15 Markovych B. M., Zadvorniak I. M. Effective potential of electron-electron interaction in the semiinfinite electron gas with regard for the local-field correction. Ukr. J. Phys. 59 (11), 1107–1113 (2014). | |
dc.citation.issue | 2 | |
dc.citation.spage | 184 | |
dc.citation.epage | 192 | |
dc.coverage.placename | Львів | |
dc.coverage.placename | Lviv | |
dc.subject.udc | 530.145 | |
Appears in Collections: | Mathematical Modeling And Computing. – 2018. – Vol. 5, No. 2
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