Beam quality $M^2(ψ)$ factor, spot rotation angle, and angular speed in general laser beams

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Hao, Zhen-Xiang, Wu, Ruo-Xi, Jin, Hong-Bo, Tao, Ya-Zheng, Wu, Yue-Liang
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916478319591424
author Hao, Zhen-Xiang
Wu, Ruo-Xi
Jin, Hong-Bo
Tao, Ya-Zheng
Wu, Yue-Liang
author_facet Hao, Zhen-Xiang
Wu, Ruo-Xi
Jin, Hong-Bo
Tao, Ya-Zheng
Wu, Yue-Liang
contents A unified definition for the rotation angle and rotation angular speed of general beams, including those with orbital angular momentum (OAM), has been lacking until now. The rotation of a general beam is characterized by observing the rotational behavior of the directions of the extreme spot sizes during propagation. We introduce the beam quality $M^2(ψ)$ factor to characterize the unique beam quality of a general beam across all directions, not limited to the $x$- or $y$-axes. Besides that, we present the beam center $s_ψ(ψ,z)$, spot size $w_ψ(ψ,z)$, waist position, waist radius, and divergence angle along the direction that forms an angle $ψ$ with the $x$-axis in the plane perpendicular to the $z$-axis for the general beam. Furthermore, this paper presents rapid calculation formulas for these parameters, utilizing the mode expansion method (MEM). Subsequently, we prove that only two extreme spot sizes exist in a given detection plane and the angle between the maximum and minimum spot angles is consistently $90^{\circ}$ during the propagation. We also prove the spot rotation angles converge as $z$ approaches either positive or negative infinity. We first show the extreme spot sizes, spot rotation angle, and angular speed for the vortex beam. Our formulas efficiently differentiate between vortex OAM beams and asymmetry OAM beams.
format Preprint
id arxiv_https___arxiv_org_abs_2411_07879
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Beam quality $M^2(ψ)$ factor, spot rotation angle, and angular speed in general laser beams
Hao, Zhen-Xiang
Wu, Ruo-Xi
Jin, Hong-Bo
Tao, Ya-Zheng
Wu, Yue-Liang
Optics
Instrumentation and Methods for Astrophysics
A unified definition for the rotation angle and rotation angular speed of general beams, including those with orbital angular momentum (OAM), has been lacking until now. The rotation of a general beam is characterized by observing the rotational behavior of the directions of the extreme spot sizes during propagation. We introduce the beam quality $M^2(ψ)$ factor to characterize the unique beam quality of a general beam across all directions, not limited to the $x$- or $y$-axes. Besides that, we present the beam center $s_ψ(ψ,z)$, spot size $w_ψ(ψ,z)$, waist position, waist radius, and divergence angle along the direction that forms an angle $ψ$ with the $x$-axis in the plane perpendicular to the $z$-axis for the general beam. Furthermore, this paper presents rapid calculation formulas for these parameters, utilizing the mode expansion method (MEM). Subsequently, we prove that only two extreme spot sizes exist in a given detection plane and the angle between the maximum and minimum spot angles is consistently $90^{\circ}$ during the propagation. We also prove the spot rotation angles converge as $z$ approaches either positive or negative infinity. We first show the extreme spot sizes, spot rotation angle, and angular speed for the vortex beam. Our formulas efficiently differentiate between vortex OAM beams and asymmetry OAM beams.
title Beam quality $M^2(ψ)$ factor, spot rotation angle, and angular speed in general laser beams
topic Optics
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2411.07879