Отрывок: The topological charge l of that beam was equal 2. Such a beam with a spiral wavefront we conditionally called the Bessel beam. On passing the beam through DOE, the in- tensity distribution in the transverse direction is shown in fig. 7. The CCD camera was fixed after the phase plate  / 4. The image was approximated by the function:   2 22 0, l x yf x y a J fR        , (3) where Jl(r) is the...
Название : Determination of the beam waist position for the spin-orbit interaction effect observation
Авторы/Редакторы : Bibikova, E.A.
Kundikova, N.D.
Shulginov, A.A.
Al-Wassiti, N.
Ключевые слова : spin-orbit interaction of light
angular momentum of photon
waist position
image processing
Дата публикации : Сен-2021
Издательство : Самарский национальный исследовательский университет
Библиографическое описание : Bibikova EA, Kundikova ND, Shulginov AA, Al-Wassiti N. Determination of the beam waist position for the spin-orbit interaction effect observation. Computer Optics 2021; 45(5): 661-666. DOI: 10.18287/2412-6179-CO-861.
Серия/номер : 45;5
Аннотация : The spin angular momentum and the extrinsic orbital angular momentum of light are associated with the polarization of light and the light propagation trajectory, respectively. Those momenta are interdependent not only in an inhomogeneous or anisotropic medium but even in free space. This interaction is called the spin-orbit interaction of light. The effects of the spin-orbit interaction of light manifest themselves in a small transverse shift of the beam field longitudinal component from the beam propagation axis in the waist region under the circular polarization sign change. They can be observed both for Gaussian beams and for structured beams. The effects of the spin-orbit interaction of light should be taken into account when nanophotonics devices are created, but the detailed investigation of the effect had not been performed yet due to the low intensity noise image of the beam waist. Precise measurements of the focal waist centerline are needed to determine the transverse shift of the beam field longitudinal component of the asymmetric converging beam’s waist under the circular polarization sign change. We propose methods for determining the transverse and longitudinal positions of the beam waist. Computer image processing methods made it possible to obtain the value of the beam waist's transverse position with an accuracy of 0.1 mm. These methods will allow further testing of the shifts' theoretical predictions, the values of which are the order of 1 mm. The results obtained can also be used for laser processing of materials by polarized light and precise positioning of the beam's focal spot at a surface.
URI (Унифицированный идентификатор ресурса) : 10.18287/2412-6179-CO-861
http://repo.ssau.ru/handle/Zhurnal-Komputernaya-optika/Determination-of-the-beam-waist-position-for-the-spinorbit-interaction-effect-observation-91885
Другие идентификаторы : Dspace\SGAU\20211009\91885
ГРНТИ: 29.03.45; 29.03.31
Располагается в коллекциях: Журнал "Компьютерная оптика"

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