In this communication we analyze the light field distribution of a highly focused radially polarized beam when passes through a linear polarizer. The polarizer is modeled as a plane-parallel uniaxial absorbing medium with the optical axis parallel to the plate surfaces of the polarizer. Analytical results and numerical calculations are provided
The features of spirally polarized light beams focused by high-numerical-aperture systems are invest...
Electromagnetic plane waves, solutions to Maxwell’s equations, are said to be ‘transverse’ in vacuum...
In this paper the polarization states of linearly and radially polarized plane wave and doughnut bea...
Linear polarizers are commonly used for projecting the direction of the electric field of a transver...
Polarisers are one of the most widely used devices in optical set-ups. They are commonly used with p...
In this Letter, we describe the behavior of partially coherent, partially polarized focused vector b...
Research on the properties of highly focused fields mainly involved fully polarized light, whereas p...
The aim of this paper is to provide a formal framework for designing highly focused fields with spec...
We experimentally demonstrate for the first time that a radially polarized field can be focused to a...
Polarization is a vector nature of light that plays an important role in optical science and enginee...
Knowing, and controlling, the spatial polarization distribution of a beam is of importance in applic...
We describe how the propagation of light through uniaxial crystals can be used as a versatile tool ...
We study the nonlinear optical propagation of two different classes of{light beams with space varyin...
Polarimetric dimension and nonregularity are newly introduced concepts that characterize three-dimen...
©2020 Optical Society of America. Ministerio de Economia y Competitividad Spanish Government [FIS201...
The features of spirally polarized light beams focused by high-numerical-aperture systems are invest...
Electromagnetic plane waves, solutions to Maxwell’s equations, are said to be ‘transverse’ in vacuum...
In this paper the polarization states of linearly and radially polarized plane wave and doughnut bea...
Linear polarizers are commonly used for projecting the direction of the electric field of a transver...
Polarisers are one of the most widely used devices in optical set-ups. They are commonly used with p...
In this Letter, we describe the behavior of partially coherent, partially polarized focused vector b...
Research on the properties of highly focused fields mainly involved fully polarized light, whereas p...
The aim of this paper is to provide a formal framework for designing highly focused fields with spec...
We experimentally demonstrate for the first time that a radially polarized field can be focused to a...
Polarization is a vector nature of light that plays an important role in optical science and enginee...
Knowing, and controlling, the spatial polarization distribution of a beam is of importance in applic...
We describe how the propagation of light through uniaxial crystals can be used as a versatile tool ...
We study the nonlinear optical propagation of two different classes of{light beams with space varyin...
Polarimetric dimension and nonregularity are newly introduced concepts that characterize three-dimen...
©2020 Optical Society of America. Ministerio de Economia y Competitividad Spanish Government [FIS201...
The features of spirally polarized light beams focused by high-numerical-aperture systems are invest...
Electromagnetic plane waves, solutions to Maxwell’s equations, are said to be ‘transverse’ in vacuum...
In this paper the polarization states of linearly and radially polarized plane wave and doughnut bea...