Orbital angular momentum (OAM) of optical vortex beams has been regarded as an independent physical dimension of light with predominant information-carrying potential. However, the presence of scattering environment and turbulent atmosphere scrambles the helical wavefront and destroys the orthogonality of modes in vortex beam propagation. Here, we propose and experimentally demonstrate a new basis for the recovery of the OAM mode using a holographic ghost diffraction scheme. The technique utilizes the speckle field generated from a rotating diffuser for optical vortex mode encoding, and the fourth-order correlation of the speckle field for the efficient recovery of the associated modes. Furthermore, we successfully demonstrate the complex-f...
Orbital angular momentum (OAM) of light represents an independent degree of freedom using orthogonal...
Optical vortex phase beams have unique amplitudes and phase distributions, rendering them sensitive ...
The desire to increase the amount of information that can be encoded onto a single photon has driven...
The orbital angular momentum (OAM) transformation of optical vortex is realized upon using aluminum ...
We present a novel technique to measure the orbital angular momentum (OAM) density of light. The tec...
We demonstrate collinear phase-shifting holography for measuring complex optical modes of twisted li...
The orbital angular momentum (OAM) holography has been marked a path to achieving ultrahigh capacity...
In optical communications, it is desirable to know some quantities describing a light field, which a...
Singular optical beams have been studied for many years after the pioneering work where the wave fun...
Optical beams that are structured in both phase and intensity have drawn considerable attention as a...
Optical vortices and specifically light with orbital angular momentum are a novel type of optical mo...
The phenomenon of orbital angular momentum (OAM) affects a variety of important applications in visi...
Light fields carrying orbital angular momentum (OAM) offer a broad variety of applications in which ...
In optics, we can generate vortex beams using specific methods such as spiral phase plates or comput...
We experimentally demonstrate that ptychographic coherent diffractive imaging can be used to simulta...
Orbital angular momentum (OAM) of light represents an independent degree of freedom using orthogonal...
Optical vortex phase beams have unique amplitudes and phase distributions, rendering them sensitive ...
The desire to increase the amount of information that can be encoded onto a single photon has driven...
The orbital angular momentum (OAM) transformation of optical vortex is realized upon using aluminum ...
We present a novel technique to measure the orbital angular momentum (OAM) density of light. The tec...
We demonstrate collinear phase-shifting holography for measuring complex optical modes of twisted li...
The orbital angular momentum (OAM) holography has been marked a path to achieving ultrahigh capacity...
In optical communications, it is desirable to know some quantities describing a light field, which a...
Singular optical beams have been studied for many years after the pioneering work where the wave fun...
Optical beams that are structured in both phase and intensity have drawn considerable attention as a...
Optical vortices and specifically light with orbital angular momentum are a novel type of optical mo...
The phenomenon of orbital angular momentum (OAM) affects a variety of important applications in visi...
Light fields carrying orbital angular momentum (OAM) offer a broad variety of applications in which ...
In optics, we can generate vortex beams using specific methods such as spiral phase plates or comput...
We experimentally demonstrate that ptychographic coherent diffractive imaging can be used to simulta...
Orbital angular momentum (OAM) of light represents an independent degree of freedom using orthogonal...
Optical vortex phase beams have unique amplitudes and phase distributions, rendering them sensitive ...
The desire to increase the amount of information that can be encoded onto a single photon has driven...