We study an optical device designed for converting the polarized Gaussian beam into an optical vortex of tunable polarization. The proposed device comprised a set of three specially prepared nematic liquid crystal cells and a nano-spherical phase plate fabricated from two types of glass nanotubes. This device generates a high-quality optical vortex possessing one of the multiple polarization states from the uniformly polarized input Gaussian beam. Its small size, simplicity of operation, and electrical steering can be easily integrated into the laboratory and industrial systems, making it a promising alternative to passive vortex retarders and spatial light modulators
Perfect vortex (PV) is a special light field with constant annular light intensity distribution whil...
We demonstrate the generation of optical vortices with radial or azimuthal polarization using a spac...
This paper will present a prototype of the first set of vortex retarders made of liquid crystal poly...
A nematic liquid crystal light valve (LCLV) is made by using a photosensitive material as one of the...
Optical vortices are attracting much attention because of their applications in various fields of op...
Spatially coherent multicolored optical vector vortex beams were created using a tunable liquid crys...
The phase and polarization of electromagnetic waves can be conveniently manipulated by the dynamic p...
Generalized vector vortex light beams possess spatially variant polarization states, and higher-orde...
In this paper we show a method for creating multiple independent quasi-perfect vector vortex beams w...
We present a convenient method to generate vector beams of light having polarization singularities o...
Light is widely used in areas such as optical communications, micro/nano fabrication, industrial pro...
Abstract We developed a new kind of compact flat-surface nanostructured gradient index vortex phase ...
This dissertation addresses the creation of polarization vortex beams. Vortex retarders are componen...
We describe the polarization topology of the vector beams emerging from a patterned birefringent liq...
This paper will present the first prototypes of vortex retarders made of photo-orientable liquid cry...
Perfect vortex (PV) is a special light field with constant annular light intensity distribution whil...
We demonstrate the generation of optical vortices with radial or azimuthal polarization using a spac...
This paper will present a prototype of the first set of vortex retarders made of liquid crystal poly...
A nematic liquid crystal light valve (LCLV) is made by using a photosensitive material as one of the...
Optical vortices are attracting much attention because of their applications in various fields of op...
Spatially coherent multicolored optical vector vortex beams were created using a tunable liquid crys...
The phase and polarization of electromagnetic waves can be conveniently manipulated by the dynamic p...
Generalized vector vortex light beams possess spatially variant polarization states, and higher-orde...
In this paper we show a method for creating multiple independent quasi-perfect vector vortex beams w...
We present a convenient method to generate vector beams of light having polarization singularities o...
Light is widely used in areas such as optical communications, micro/nano fabrication, industrial pro...
Abstract We developed a new kind of compact flat-surface nanostructured gradient index vortex phase ...
This dissertation addresses the creation of polarization vortex beams. Vortex retarders are componen...
We describe the polarization topology of the vector beams emerging from a patterned birefringent liq...
This paper will present the first prototypes of vortex retarders made of photo-orientable liquid cry...
Perfect vortex (PV) is a special light field with constant annular light intensity distribution whil...
We demonstrate the generation of optical vortices with radial or azimuthal polarization using a spac...
This paper will present a prototype of the first set of vortex retarders made of liquid crystal poly...