Vortex beams are structured light fields with a helical phase of the form exp (ilϕ) that carries an optical angular momentum (OAM) of lℏ per photon. Such beams typically have a ring-shaped intensity with a radius that varies with l. Perfect vortex (PV) beams are designed to have a radius that is approximately uniform over a certain OAM range. Here, we report how spatial coherence can be used to maintain a fixed ring shape over a larger propagation distance and for a greater OAM range than is possible for fully coherent vortex beams. Our work is relevant for the application of PV beams in areas such as trapping, tweezing, and optical communications
We consider recently introduced self-focusing fields that carry orbital angular momentum (OAM) [2021...
Optical vortices are singularities in phase fronts of optical beams. They are characterized by a dar...
The propagating four-dimensional mutual coherence function of a partially coherent Gaussian beam con...
Partially coherent vortex beam exhibits some unique and interesting properties, for example, correla...
Spatially coherent helically phased light beams carry orbital angular momentum (OAM) and contain pha...
We propose and experimentally implement a method for the generation of a wide class of partially spa...
Optical vortex (OV) can be used in the fields of optical manipulation and optical communication beca...
Normally, intensity patterns of vortex beams are closed rings such as Laguerre–Gaussian beams and Be...
The perfect vortex is a new class of optical vortex beam having ring radius independent of its topol...
It is demonstrated that the spectral degree of coherence of a partially coherent beam may possess is...
Tight focusing of partially polarized vortex beams has been studied. Compact form of the coherence m...
Some light beams rotate as they propagate. If it is not the polarization vector, but the phase struc...
Vortices in optical beams have been the subject of extensive study since their status as a generic f...
We study the evolution of phase singularities and coherence singularities in a Laguerre-Gauss beam t...
The authors would like to thank the UK Engineering and Physical Sciences Research Council (EPSRC) fo...
We consider recently introduced self-focusing fields that carry orbital angular momentum (OAM) [2021...
Optical vortices are singularities in phase fronts of optical beams. They are characterized by a dar...
The propagating four-dimensional mutual coherence function of a partially coherent Gaussian beam con...
Partially coherent vortex beam exhibits some unique and interesting properties, for example, correla...
Spatially coherent helically phased light beams carry orbital angular momentum (OAM) and contain pha...
We propose and experimentally implement a method for the generation of a wide class of partially spa...
Optical vortex (OV) can be used in the fields of optical manipulation and optical communication beca...
Normally, intensity patterns of vortex beams are closed rings such as Laguerre–Gaussian beams and Be...
The perfect vortex is a new class of optical vortex beam having ring radius independent of its topol...
It is demonstrated that the spectral degree of coherence of a partially coherent beam may possess is...
Tight focusing of partially polarized vortex beams has been studied. Compact form of the coherence m...
Some light beams rotate as they propagate. If it is not the polarization vector, but the phase struc...
Vortices in optical beams have been the subject of extensive study since their status as a generic f...
We study the evolution of phase singularities and coherence singularities in a Laguerre-Gauss beam t...
The authors would like to thank the UK Engineering and Physical Sciences Research Council (EPSRC) fo...
We consider recently introduced self-focusing fields that carry orbital angular momentum (OAM) [2021...
Optical vortices are singularities in phase fronts of optical beams. They are characterized by a dar...
The propagating four-dimensional mutual coherence function of a partially coherent Gaussian beam con...