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<article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:ali="http://www.niso.org/schemas/ali/1.0/" article-type="research-article" dtd-version="1.2" xml:lang="en"><front><journal-meta><journal-id journal-id-type="publisher-id">Plasma Physics Reports</journal-id><journal-title-group><journal-title xml:lang="en">Plasma Physics Reports</journal-title><trans-title-group xml:lang="ru"><trans-title>Физика плазмы</trans-title></trans-title-group></journal-title-group><issn publication-format="print">0367-2921</issn><issn publication-format="electronic">3034-6371</issn><publisher><publisher-name xml:lang="en">The Russian Academy of Sciences</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="publisher-id">686401</article-id><article-id pub-id-type="doi">10.31857/S0367292125020074</article-id><article-id pub-id-type="edn">GAGFQY</article-id><article-categories><subj-group subj-group-type="toc-heading"><subject>ПЫЛЕВАЯ ПЛАЗМА</subject></subj-group><subj-group subj-group-type="article-type"><subject>Research Article</subject></subj-group></article-categories><title-group><article-title xml:lang="en">ENERGY TRANSFER IN A PLASMA CRYSTAL</article-title><trans-title-group xml:lang="ru"><trans-title>ПЕРЕНОС ЭНЕРГИИ В ПЛАЗМЕННОМ КРИСТАЛЛЕ</trans-title></trans-title-group></title-group><contrib-group><contrib contrib-type="author"><name-alternatives><name xml:lang="en"><surname>Ignatov</surname><given-names>A. M.</given-names></name><name xml:lang="ru"><surname>Игнатов</surname><given-names>А. М.</given-names></name></name-alternatives><email>aign@fpl.gpi.ru</email><xref ref-type="aff" rid="aff1"/></contrib></contrib-group><aff-alternatives id="aff1"><aff><institution xml:lang="en">Prokhorov General Physics Institute, Russian Academy of Sciences</institution></aff><aff><institution xml:lang="ru">Институт общей физики им. А.М. Прохорова РАН</institution></aff></aff-alternatives><pub-date date-type="pub" iso-8601-date="2025-02-15" publication-format="electronic"><day>15</day><month>02</month><year>2025</year></pub-date><volume>51</volume><issue>2</issue><issue-title xml:lang="en">VOL 51, NO2 (2025)</issue-title><issue-title xml:lang="ru">ТОМ 51, №2 (2025)</issue-title><fpage>201</fpage><lpage>209</lpage><history><date date-type="received" iso-8601-date="2025-06-30"><day>30</day><month>06</month><year>2025</year></date></history><permissions><copyright-statement xml:lang="en">Copyright ©; 2025, Russian Academy of Sciences</copyright-statement><copyright-statement xml:lang="ru">Copyright ©; 2025, Российская академия наук</copyright-statement><copyright-year>2025</copyright-year><copyright-holder xml:lang="en">Russian Academy of Sciences</copyright-holder><copyright-holder xml:lang="ru">Российская академия наук</copyright-holder></permissions><self-uri xlink:href="https://journals.eco-vector.com/0367-2921/article/view/686401">https://journals.eco-vector.com/0367-2921/article/view/686401</self-uri><abstract xml:lang="en"><p>The influence of non-reciprocity of interparticle forces on the energy transfer in a planar plasma crystal is theoretically studied. It is shown that the energy exchange between the dust component and the surrounding plasma plays a significant role. The distribution of the average kinetic energy of particles in the vicinity of a point source of random noise is calculated.</p></abstract><trans-abstract xml:lang="ru"><p>Теоретически исследуется влияние невзаимности межчастичных сил на перенос энергии в планарном плазменном кристалле. Показано, что существенную роль играет обмен энергией между пылевым компонентом и окружающей плазмой. Вычислено распределение средней кинетической энергии частиц в окрестности точечного источника случайного шума.</p></trans-abstract><kwd-group xml:lang="en"><kwd>dusty plasma</kwd><kwd>thermal conductivity</kwd></kwd-group><kwd-group xml:lang="ru"><kwd>пылевая плазма</kwd><kwd>теплопроводность</kwd></kwd-group></article-meta></front><body></body><back><ref-list><ref id="B1"><label>1.</label><mixed-citation>Комплексная и пылевая плазма. / Ред. В.Е. Фортов, Г.Е. Морфилл М.: Физматлит, 2012.</mixed-citation></ref><ref id="B2"><label>2.</label><mixed-citation>Tsytovich V.N., Morfill G.E., Vladimirov S.V., Thomas H.M. Elementary Physics of Complex Plasmas. Lect. Notes Phys. 731. Belin, Heidelberg: Springer, 2008.</mixed-citation></ref><ref id="B3"><label>3.</label><mixed-citation>Vladimirov S.V., Ostrikov K., Samarian A.A. Physics and Applications of Complex Plasmas. Imperial College Press, 2005.</mixed-citation></ref><ref id="B4"><label>4.</label><mixed-citation>Фортов В.Е., Ваулина О.С., Петров О.Ф., Шахова И.А., Гавриков А.В., Хрусталев Ю.В. // Физика плазмы. 2006. Т. 32. С. 352.</mixed-citation></ref><ref id="B5"><label>5.</label><mixed-citation>Fortov V.E., Vaulina O.S., Petrov O.F., Vasiliev M.N., Gavrikov A.V., Shakova I.A., Vorona N.A., Khrustalyov Yu.V., Manohin A.A., Chernyshev A.V. // Phys. Rev. E. 2007. V. 75. P. 026403.</mixed-citation></ref><ref id="B6"><label>6.</label><mixed-citation>Nunomura S., Samsonov D., Zhdanov S., Morfill G. // Phys. Rev. Lett. 2005. V. 95. P. 025003.</mixed-citation></ref><ref id="B7"><label>7.</label><mixed-citation>Nosenko V., Goree J., Piel A.// Phys. Plasmas. 2006. V. 13. P. 032106.</mixed-citation></ref><ref id="B8"><label>8.</label><mixed-citation>Nosenko V., Zhdanov S., Ivlev A.V., Morfill G., Goree J., Piel A. // Phys. Rev. Lett. 2008. V. 100. P. 025003.</mixed-citation></ref><ref id="B9"><label>9.</label><mixed-citation>Hou L.-J., Piel A. // J. Phys. A. 2009. V. 42. P. 214025.</mixed-citation></ref><ref id="B10"><label>10.</label><mixed-citation>Khrustalyov Yu.V., Vaulina O.S.// Phys. Rev. E. 2012. V. 85. P. 046405.</mixed-citation></ref><ref id="B11"><label>11.</label><mixed-citation>Хрусталев Ю.В., Ваулина О.С. // ЖЭТФ. 2013. Т. 143. С. 1009.</mixed-citation></ref><ref id="B12"><label>12.</label><mixed-citation>Kudelis G., Thomsen H., Bonitz M. // Phys. Plasmas. 2013. V.20. P. 073701.</mixed-citation></ref><ref id="B13"><label>13.</label><mixed-citation>Shahzad A., He M.-G. // Phys. Plasmas. 2015. V. 22. P. 123707.</mixed-citation></ref><ref id="B14"><label>14.</label><mixed-citation>Shahzad A., Kashif M., Munir T., He M., Tu X. // Phys. Plasmas. 2020. V. 27. P. 103702.</mixed-citation></ref><ref id="B15"><label>15.</label><mixed-citation>Ваулина О.С., Лисина И.И., Лисин Е.А. // ЖЭТФ. 2015. Т. 148. С. 819.</mixed-citation></ref><ref id="B16"><label>16.</label><mixed-citation>Игнатов А.М. // Физика плазмы. 2023. Т. 49. С. 359.</mixed-citation></ref><ref id="B17"><label>17.</label><mixed-citation>Игнатов А.М. // Физика плазмы. 2019. Т. 45. С. 825.</mixed-citation></ref><ref id="B18"><label>18.</label><mixed-citation>Климонтович Ю.Л. Статистическая физика. М.: Наука, 1982.</mixed-citation></ref><ref id="B19"><label>19.</label><mixed-citation>Любарский Г.Я. Теория групп и ее применение в физике. М.: ГИНТД, 1957.</mixed-citation></ref><ref id="B20"><label>20.</label><mixed-citation>Игнатов А.М. // Физика плазмы. 2022. Т. 48. С. 519.</mixed-citation></ref><ref id="B21"><label>21.</label><mixed-citation>Займан Дж. Принципы теории твердого тела. М.: Мир, 1974.</mixed-citation></ref><ref id="B22"><label>22.</label><mixed-citation>Игнатов А.М. // Физика плазмы. 2020. Т. 46. С. 358.</mixed-citation></ref></ref-list></back></article>
