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Titlebook: Optical Hall Effect in the Sharp Focus of Laser Light; Victor V. Kotlyar,Alexey A. Kovalev,Anton G. Nalim Book 2024 The Editor(s) (if appl

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书目名称Optical Hall Effect in the Sharp Focus of Laser Light
编辑Victor V. Kotlyar,Alexey A. Kovalev,Anton G. Nalim
视频video
概述Introduces and explores the optical spin Hall effect .Presents a structured, single approach based on the Richards-Wolf theory and discusses results from computer modeling.Serves as a valuable resourc
图书封面Titlebook: Optical Hall Effect in the Sharp Focus of Laser Light;  Victor V. Kotlyar,Alexey A. Kovalev,Anton G. Nalim Book 2024 The Editor(s) (if appl
描述.This book explores the optical Hall effect in the sharp focus of laser light. It builds upon the established theory of Richards-Wolf (1959), providing numerous real-world examples that illustrate both spin and orbital Hall effects near the focal point...Within the focal zone, distinct regions of left and right circular polarization emerge, showcasing the orbital Hall effect. This effect becomes apparent when localized areas within the focal plane experience transverse energy flow, rotating either clockwise or counterclockwise. The spin Hall effect, a fundamental occurrence, is demonstrated when a linearly polarized Gaussian beam is concentrated...Furthermore, the book reveals spin and orbital Hall effects in light fields with nonuniform linear polarization, where the polarization direction varies within the beam cross section. While the optical or photonic Hall effect has been recognized since 2004, a comprehensive monograph detailing its focal dynamics has been lacking until now...Drawing from the cohesive theoretical framework of the Richards-Wolf theory, this book offers specific examples and results from computer modeling. It equips readers with analytical relations for calcul
出版日期Book 2024
关键词Paraxial Laser beams; Poincaré Beams; Phase and Polarization Uncertainty; Spin Hall Effect; Richards-Wol
版次1
doihttps://doi.org/10.1007/978-3-031-64683-6
isbn_softcover978-3-031-64685-0
isbn_ebook978-3-031-64683-6
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
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Cylindrical Fractional-Order and Double-Index Vector Laser Beams,Cylindrical vector beams (CVBs) (Zhan in Adv. Opt. Photon. 1:1–57, 2009) are now widely used because of the unique properties they exhibit in tight focusing.
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Hall Effect in Paraxial Laser Beams,In micromachines, elements can be driven by light and optical vortex beams are widely adopted in optical tweezers. One of the natural generalizations of optical vortex beams are light fields with multiple vortices.
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Spin Hall Effect at the Focus for Light with Linear Polarization,lect the vector nature of the light wave. In this case, to calculate the light field at the focus, it is necessary to take into account all the components of the strength of the electric and magnetic field of the light wave.
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Spin Hall Effect at the Focus for Light with Circular Polarization,ett. A 333:181–186, 2004; Bliokh and Bliokh in Phys. Rev. Lett. 96:073903, 2006) the theory of the Hall effect for light was developed. In (Kavokin et al. in Phys. Rev. Lett. 95:136601, 2005; Hosten and Kwiat in Science 319:787–790, 2008) the Hall effect in optics was experimentally discovered.
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Focusing of Cylindrical Vector Beams and Their Modifications,arch In this section, we derive the Poincare-Hopf and Stokes indices . and σ for .th-order cylindrical vector beams. We show that in the source plane of the beams (where the on-axis field component is zero),
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Sharp Focusing of Modified Cylindrical Vector Laser Beams, R Soc Lond A 253:358–379, 1959). Numerous follow-up publications relied on the Richards-Wolf formalism to look into the behavior of more general electromagnetic fields with various polarization states.
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