Vol. 55, Issue 3, pp. 341-353 (2025)
Keywords
Lorentz–Gaussian beam, vector diffraction theory, transverse energy flow
Abstract
On the basis of the vector diffraction theory, this article investigates the transverse energy flow distributions of azimuthally polarized Lorentz–Gaussian beams modulated by power order space-variant phase modulation. The findings of the study show that the distribution of transverse energy flow is significantly affected by variations in the power order of the space-variant phase n. We obtained circular distribution, two zone distribution, bullet-shaped distribution, and reverse Z-distribution. Furthermore, it can be observed that the variation of phase change parameter C will affect the transverse energy flow distributions, while the variation of topological charge m will lead to the diffusion of energy. These phenomena may assist in capturing specific particles.