Liu Zhongtian, Zheng Hao, Li Chunwei, Qi Zunhan, Zhang Cunwei, Li Tie, Bai Zhenxu
Center for Advanced Laser Technology, School of Electronics and Information Engineering, Hebei University of Technology, Tianjin 300401, China.
Hebei Key Laboratory of Advanced Laser Technology and Equipment, Tianjin 300401, China.
Micromachines (Basel). 2025 Aug 29;16(9):990. doi: 10.3390/mi16090990.
As a key parameter that defines the spectral characteristics of lasers, the precise measurement of laser linewidth is crucial for a wide range of advanced applications. This review systematically summarizes recent advances in laser linewidth measurement techniques, covering methods applicable from GHz-level broad linewidths to sub-Hz ultranarrow regimes. We begin by presenting representative applications of lasers with varying linewidth requirements, followed by the physical definition of linewidth and a discussion of the fundamental principles underlying its measurement. For broader linewidth regimes, we review two established techniques: direct spectral measurement using high-resolution spectrometers and Fabry-Pérot interferometer-based analysis. In the context of narrow-linewidth lasers, particular emphasis is placed on the optical beating method. A detailed comparison is provided between two dominant approaches: power spectral density (PSD) analysis of the beat signal and phase-noise-based linewidth evaluation. For each technique, we discuss the working principles, experimental configurations, achievable resolution, and limitations, along with comparative assessments of their advantages and drawbacks. Additionally, we critically examine recent innovations in ultra-high-precision linewidth metrology. This review aims to serve as a comprehensive technical reference for the development, characterization, and application of lasers across diverse spectral regimes.
作为定义激光光谱特性的关键参数,激光线宽的精确测量对于广泛的先进应用至关重要。本综述系统地总结了激光线宽测量技术的最新进展,涵盖了从吉赫兹级宽带宽到亚赫兹超窄线宽范围适用的方法。我们首先介绍了具有不同线宽要求的激光的代表性应用,接着是线宽的物理定义以及对其测量基础基本原理的讨论。对于较宽带宽范围,我们回顾了两种成熟技术:使用高分辨率光谱仪的直接光谱测量和基于法布里 - 珀罗干涉仪的分析。在窄线宽激光的背景下,特别强调了光学拍频法。对两种主要方法进行了详细比较:拍频信号的功率谱密度(PSD)分析和基于相位噪声的线宽评估。对于每种技术,我们讨论了工作原理、实验配置、可实现的分辨率和局限性,以及对其优缺点的比较评估。此外,我们批判性地审视了超高精度线宽计量学的最新创新。本综述旨在为不同光谱范围的激光的开发、表征和应用提供全面的技术参考。