Energy backflow in the focal spot of a cylindrical vector beam

Автор: Stafeev Sergey S., Nalimov Anton Gennadyevich, Kotlyar Victor Victorovich

Журнал: Компьютерная оптика @computer-optics

Рубрика: Дифракционная оптика, оптические технологии

Статья в выпуске: 5 т.42, 2018 года.

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Using Richards-Wolf formulae it is shown that a tightly focused azimuthally-radially polarized m-th order laser beam with an arbitrary apodization function produces a reverse energy flow in the focal plane ( m =2). If m =3, the reverse energy flow on the axis is equal to zero, increasing in the axis vicinity as the square of the distance to the axis. The azimuthally-radially polarized beam of the m-th order is an example of a polarization vortex. Previously, the reverse energy flow in the focus was obtained only for circularly polarized vortex beams with the topological charge m. Using the FDTD method and the Richards-Wolf formulae, we show numerically that in the focus of a zone plate such laser beams produce regions where the Poynting vector is opposite to the direction of the beam propagation.

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Fdtd-метод, richards-wolf formulae, fdtd-method, polarization vortex, energy backflow

Короткий адрес: https://sciup.org/140238475

IDR: 140238475   |   DOI: 10.18287/2412-6179-2018-42-5-744-750

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