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PHYSICS
Movement and localization of nanoparticles in an ideal liquid under the influence of the gradient force of light pressure
A. Ch. Svistun, E. V. Musafirov, L. S. Gaida, E. V. Matuk Yanka Kupala State University of Grodno
Abstract:
A theoretical analysis of the qualitative behavior of solutions to the Langevin equation for the motion of a spherical
dielectric nanoparticle located in an interference field formed by the superposition of oncoming laser beams under the action of
a gradient force without taking into account the resistance force of the medium is carried out. It is shown that, depending on the
initial conditions, two different modes of movement of nanoparticles are possible – localization of nanoparticles in one of the
maxima of the interference pattern of radiation or unlimited distance from the initial position within the interference field.
Keywords:
dielectric nanoparticles, radiation forces, light scattering, interference of electromagnetic waves.
Received: 18.10.2023
Citation:
A. Ch. Svistun, E. V. Musafirov, L. S. Gaida, E. V. Matuk, “Movement and localization of nanoparticles in an ideal liquid under the influence of the gradient force of light pressure”, PFMT, 2024, no. 1(58), 44–49
Linking options:
https://www.mathnet.ru/eng/pfmt948 https://www.mathnet.ru/eng/pfmt/y2024/i1/p44
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Statistics & downloads: |
Abstract page: | 67 | Full-text PDF : | 29 | References: | 18 |
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