Depth of focus and intensity distribution of a lensacon illuminated by a partially coherent Gaussian Schell vortex beam

MS Qusailah, AA Alkelly, HO Al-Nadary, SAM Kaid… - Applied Optics, 2024 - opg.optica.org
Using the extended Huygens–Fresnel principle, a cross-spectral density formula was
developed for a Gaussian Schell model vortex (PCGSMV) beam diffracted through a …

Tight focusing Lorenz–Gaussian vortex beams modulated by power order space-variant phase

S Li, J Li, G Feng - Optical and Quantum Electronics, 2024 - Springer
The aim of this paper is to investigate the focusing properties of linearly polarized Lorenz–
Gaussian vortex beams modulated with power order space-variant (POSV) phase, which is …

Focus shaping of circularly polarized Bessel–Gaussian vortex beam with binary axicon for nanoparticle trapping

HT Al-Ahsab, M Cheng, IGH Loqman, S Kaid… - Optics …, 2024 - opg.optica.org
Based on the vector Debye approximation theory, focusing on circularly polarized Bessel–
Gaussian vortex (CPBGV) beam by a binary axicon has been investigated. Different focal …

Focusing characteristics of space-variant quadratic phase modulated linearly polarized Bessel–Gaussian vortex beam

Y Chen, H Xu, H Sun, Y Yang, X Lou, S Fan - Optical and Quantum …, 2024 - Springer
The focusing characteristics of the Bessel–Gaussian (BG) beam, characterized by a tailored
space-variant quadratic (SQ) phase, are explored based on the principles of vector …

Depth of focus and Intensity distribution of lensacon illuminated by partially coherent Gaussian Schell vortex beam

S Kaid, A Alkelly, H Alnadary, H Al-Ahsab - 2024 - preprints.opticaopen.org
Using the extended Huygens-Fresnel principle, a cross-spectral density formula was
developed for a Gaussian Schell model vortex (PCGSMV) beam diffracted through …