The movement of silver nanoparticles in liquid with various viscosity under the influence of forces of light pressure
Problemy fiziki, matematiki i tehniki, no. 4 (2016), pp. 7-12.

Voir la notice de l'article provenant de la source Math-Net.Ru

The results of theoretical and experimental studies of influence of forces of light pressure upon the movement of the silver nanoparticles which are in liquid environments with various value of viscosity are given. The expression of the main equation of dynamics taking into account the gradient force, forces of absorption and dispersion operating on a metal spherical nanoparticle in the field of the focused laser beam of a Gaussian form are received. The speeds of the movement of silver nanoparticles and their movement in environments with various coefficients of viscosity are experimentally determined.
Mots-clés : metal nanoparticle, gradient force, forces of dispersion and absorption
Keywords: Gaussian beam, speed of nanoparticles, liquid viscosity.
@article{PFMT_2016_4_a0,
     author = {A. A. Afanas'ev and L. S. Gaida and E. V. Matuk and A. Ch. Svistun},
     title = {The movement of silver nanoparticles in liquid with various viscosity under the influence of forces of light pressure},
     journal = {Problemy fiziki, matematiki i tehniki},
     pages = {7--12},
     publisher = {mathdoc},
     number = {4},
     year = {2016},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/PFMT_2016_4_a0/}
}
TY  - JOUR
AU  - A. A. Afanas'ev
AU  - L. S. Gaida
AU  - E. V. Matuk
AU  - A. Ch. Svistun
TI  - The movement of silver nanoparticles in liquid with various viscosity under the influence of forces of light pressure
JO  - Problemy fiziki, matematiki i tehniki
PY  - 2016
SP  - 7
EP  - 12
IS  - 4
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/PFMT_2016_4_a0/
LA  - ru
ID  - PFMT_2016_4_a0
ER  - 
%0 Journal Article
%A A. A. Afanas'ev
%A L. S. Gaida
%A E. V. Matuk
%A A. Ch. Svistun
%T The movement of silver nanoparticles in liquid with various viscosity under the influence of forces of light pressure
%J Problemy fiziki, matematiki i tehniki
%D 2016
%P 7-12
%N 4
%I mathdoc
%U http://geodesic.mathdoc.fr/item/PFMT_2016_4_a0/
%G ru
%F PFMT_2016_4_a0
A. A. Afanas'ev; L. S. Gaida; E. V. Matuk; A. Ch. Svistun. The movement of silver nanoparticles in liquid with various viscosity under the influence of forces of light pressure. Problemy fiziki, matematiki i tehniki, no. 4 (2016), pp. 7-12. http://geodesic.mathdoc.fr/item/PFMT_2016_4_a0/

[1] A. Ashkin, J. M. Dziedzic, J. E. Bjorkholm, S. Chu, “Observation of a single-beam gradient force optical trap for dielectric particles”, Opt. Lett., 11 (1986), 288–290 | DOI

[2] A. Ashkin, J. M. Dziedzic, T. Yamane, “Optical trapping and manipulation of single cells using infrared laser beams”, Nature, 330 (1987), 769–771 | DOI

[3] D. V. Guzatov, L. S. Gaida, “Teoreticheskoe issledovanie sily svetovogo davleniya, deistvuyuschei na sfericheskie nanochastitsy v pole lazernogo izlucheniya”, Vestnik BGU: Seriya 1, 2010, no. 3, 29–33

[4] A. A. Afanasev, L. C. Gaida, D. V. Guzatov, I. I. Kurguzenkova, E. V. Matuk, “Transportirovka metallicheskikh nanochastits v vyazkoi srede s pomoschyu lazernogo izlucheniya”, Materialy IX Mezhdunarodnoi konferentsii «Lazernaya fizika i opticheskie tekhnologii» (Grodno, 30 maya–2 iyunya 2012 g.), Institut fiziki NAN Belarusi im. B. I. Stepanova, Minsk, 2012, 264–268

[5] A. N. Rubinov, V. M. Katarkevich, T. Sh. Efendiev, “Sortirovka mikrochastits gradientnym polem”, Zhurnal prikladnoi spektroskopii, 2003, no. 5(70), 663–666

[6] A. A. Afanasev, L. S. Gaida, D. V. Guzatov, A. N. Rubinov, A. Ch. Svistun, “O radiatsionnykh silakh, deistvuyuschikh na prozrachnuyu nanochastitsu v pole sfokusirovannogo lazernogo puchka”, Kvantovaya elektronika, 45:10 (2015), 604–607

[7] A. A. Afanasev, L. S. Gaida, Yu. A. Kurochkin, D. V. Novitskii, A. Ch. Svistun, “Kontsentratsionnaya nelineinost suspenzii prozrachnykh mikrosfer pod deistvie gradientnoi sily v pole periodicheski modulirovannogo lazernogo izlucheniya”, Kvantovaya elektronika, 46:10 (2016), 891–894

[8] I. I. Kurguzenkova, D. V. Guzatov, L. S. Gaida, “Svetovoe davlenie na sfericheskuyu nanochastitsu s kontsentricheskoi obolochkoi v pole ploskoi elektromagnitnoi volny”, Problemy fiziki, matematiki i tekhniki, 2013, no. 2(15), 11–17

[9] M. Kitz et al., “Vapor bubble generation around gold nanoparticles and its application to damaging of cells”, Biomed. Opt. Express, 2:2 (2011), 291–304 | DOI

[10] A. N. Khlebtsov, “Optika i biofotonika nanochastits s plazmonnym rezonansom”, Kvantovaya elektronika, 38:6 (2008), 504–529

[11] E. Prodan et al., “A hybridization model for the Plasmon response of complex nanostructures”, Science, 302 (2003), 419–422 | DOI

[12] V. V. Klimov, Nanoplazmonika, Fizmatlit, M., 2009, 480 pp.

[13] 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

[14] L. Bosanac, T. Aabo, P. M. Bendix, L. B. Oddershede, “Efficient Optical Trapping and Visualization of Silver Nanoparticles”, Nano Letters, 8:5 (2008), 1486–1491 | DOI

[15] E. V. Matuk, L. S. Gaida, D. V. Guzatov, “Dvizhenie metallicheskoi nanochastitsy vblizi poverkhnosti puzyrka vozdukha v zhidkosti pod deistviem sily svetovogo davleniya”, Problemy fiziki, matematiki i tekhniki, 2015, no. 3(24), 17–20

[16] S. A. Akhmanov, S. Yu. Nikitin, Fizicheskaya optika, Nauka, M., 2004, 654 pp.

[17] A. A. Afanasev, L. S. Gaida, D. V. Guzatov, D. V. Novitskii, E. V. Matuk, “Transportirovka sfericheskoi prozrachnoi nanochastitsy radiatsionnymi silami v pole gaussova puchka lazernogo izlucheniya”, Optika i spektroskopiya, 120:1 (2016), 53–57 | DOI

[18] P. B. Johnson, R. W. Christy, “Optical constants of the noble metals”, Phys. Rev. B, 6:12 (1973), 4370–4379 | DOI

[19] I. K. Kikoin (red.), Tablitsy fizicheskikh velichin, Atomizdat, M., 1976, 1006 pp.