Spatially coherent helically phased light beams carry orbital angular momentum (OAM) and contain phase singularities at their centre. Destructive interference at the position of the phase singularity means the intensity at this point is necessarily zero, which results in a high contrast between the centre and the surrounding annular intensity distribution. Beams of reduced spatial coherence yet still carrying OAM have previously been referred to as Rankine vortices. Such beams no longer possess zero intensity at their centre, exhibiting a contrast that decreases as their spatial coherence is reduced. In this work, we study the contrast of a vortex beam as a function of its spatial coherence and topological charge. We show that beams carryin...
We study the evolution of phase singularities and coherence singularities in a Laguerre-Gauss beam t...
This work is supported by UK EPSRCBy analysis of the far-field cross-correlation function (CCF) of p...
Optical singularities manifesting at the center of vector vortex beams are unstable, since their top...
Spatially coherent helically phased light beams carry orbital angular momentum (OAM) and contain pha...
We analyze the properties of light beams carrying phase singularities, or optical vortices. The tran...
Optical vortices are singularities in phase fronts of optical beams. They are characterized by a dar...
Partially coherent vortex beam exhibits some unique and interesting properties, for example, correla...
In the theory of partial coherence, coherence singularities can occur in the spectral degree of cohe...
Vector optical vortices exhibit complex polarisation patterns due to the interplay between spin and ...
Vortex beams acquire increasing attention due to their unique properties. These beams have an annula...
We introduce a simple, single beam method for determination of the topological charge of polychroma...
We report on a partially coherent radially polarized power-exponent-phase vortex (PC-RP-PEPV) beam w...
Vortex beams are structured light fields with a helical phase of the form exp (ilϕ) that carries an ...
Funding: EPSRC, UKThe study and application of optical vortices have gained significant prominence o...
The authors would like to thank the UK Engineering and Physical Sciences Research Council (EPSRC) fo...
We study the evolution of phase singularities and coherence singularities in a Laguerre-Gauss beam t...
This work is supported by UK EPSRCBy analysis of the far-field cross-correlation function (CCF) of p...
Optical singularities manifesting at the center of vector vortex beams are unstable, since their top...
Spatially coherent helically phased light beams carry orbital angular momentum (OAM) and contain pha...
We analyze the properties of light beams carrying phase singularities, or optical vortices. The tran...
Optical vortices are singularities in phase fronts of optical beams. They are characterized by a dar...
Partially coherent vortex beam exhibits some unique and interesting properties, for example, correla...
In the theory of partial coherence, coherence singularities can occur in the spectral degree of cohe...
Vector optical vortices exhibit complex polarisation patterns due to the interplay between spin and ...
Vortex beams acquire increasing attention due to their unique properties. These beams have an annula...
We introduce a simple, single beam method for determination of the topological charge of polychroma...
We report on a partially coherent radially polarized power-exponent-phase vortex (PC-RP-PEPV) beam w...
Vortex beams are structured light fields with a helical phase of the form exp (ilϕ) that carries an ...
Funding: EPSRC, UKThe study and application of optical vortices have gained significant prominence o...
The authors would like to thank the UK Engineering and Physical Sciences Research Council (EPSRC) fo...
We study the evolution of phase singularities and coherence singularities in a Laguerre-Gauss beam t...
This work is supported by UK EPSRCBy analysis of the far-field cross-correlation function (CCF) of p...
Optical singularities manifesting at the center of vector vortex beams are unstable, since their top...