Voir la notice de l'article provenant de la source Math-Net.Ru
@article{PFMT_2015_3_a2, author = {E. V. Matuk and L. S. Gaida and D. V. Guzatov}, title = {The movement of the metal nanoparticles near the surface of the air bubble in the liquid by the radiation pressure force}, journal = {Problemy fiziki, matematiki i tehniki}, pages = {17--20}, publisher = {mathdoc}, number = {3}, year = {2015}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/PFMT_2015_3_a2/} }
TY - JOUR AU - E. V. Matuk AU - L. S. Gaida AU - D. V. Guzatov TI - The movement of the metal nanoparticles near the surface of the air bubble in the liquid by the radiation pressure force JO - Problemy fiziki, matematiki i tehniki PY - 2015 SP - 17 EP - 20 IS - 3 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/PFMT_2015_3_a2/ LA - ru ID - PFMT_2015_3_a2 ER -
%0 Journal Article %A E. V. Matuk %A L. S. Gaida %A D. V. Guzatov %T The movement of the metal nanoparticles near the surface of the air bubble in the liquid by the radiation pressure force %J Problemy fiziki, matematiki i tehniki %D 2015 %P 17-20 %N 3 %I mathdoc %U http://geodesic.mathdoc.fr/item/PFMT_2015_3_a2/ %G ru %F PFMT_2015_3_a2
E. V. Matuk; L. S. Gaida; D. V. Guzatov. The movement of the metal nanoparticles near the surface of the air bubble in the liquid by the radiation pressure force. Problemy fiziki, matematiki i tehniki, no. 3 (2015), pp. 17-20. http://geodesic.mathdoc.fr/item/PFMT_2015_3_a2/
[1] A. Ashkin, J. M. Dziedzic, “Optical trapping and manipulation of viruses and bacteria”, Science, 235 (1987), 1517–1520 | DOI
[2] J. Popp, F. Sondermann (ed.), IPHT Jena annual report 2007, Color-Druck Zwickau GmbH Co. KG, Zwickau, 2008, 148 pp.
[3] A. A. Afanasev i dr., “Modulyatsiya kontsentratsii chastits v interferentsionnom pole lazernogo izlucheniya”, ZhPS, 69:5 (2002), 675–678
[4] A. A. Afanasev i dr., “Chetyrekhvolnovoe smeschenie v zhidkoi suspenzii dielektricheskikh prozrachnykh mikrosfer”, ZhETF, 128:3 (2005), 451–463
[5] K. D. Wulf, “Aberration correction in holographic optical tweezers”, Opt. Express, 14:9 (2006), 4170–4175 | DOI
[6] P. W. Smith, A. Ashkin, W. J. Tomlinson, “Four-wave mixing in an artificial Kerr medium”, Opt. Lett., 6 (1981), 284–286 | DOI
[7] A. Eshkin, “Davlenie lazernogo izlucheniya”, UFN, 110:1 (1973), 101–116 | DOI
[8] P. C. Chaumet, M. Nieto-Vesperinas, “Time-averaged total force on a dipolar sphere in an electromagnetic field”, Opt. Lett., 25:15 (2000), 1065–1067 | DOI
[9] A. V. Kats, “Radiatsionnaya sila, deistvuyuschaya na chastitsu v elektromagnitnom pole pri proizvolnom sootnoshenii mezhdu razmerom chastitsy i dlinoi volny”, Izv. vyssh. uch. zav. Radiofizika, XVIII:4 (1975), 566–575
[10] L. D. Landau, E. M. Livshits, Elektrodinamika sploshnykh sred, Nauka, M., 1982, 602 pp.
[11] V. V. Klimov, Nanoplazmonika, Fizmatlit, M., 2009, 480 pp.
[12] Chenglong Zhao, Yuliang Xie, Zhangming Mao, Yanhui Zhao, Joseph Rufo, Shikuan Yang, Feng Guo, John D. Mai, Tony Jun Huang, “Theory and experiment on particle trapping and manipulation via optothermally generated bubbles”, Lab Chip., 2014, no. 14, 384–391