相位噪声
干扰(通信)
光学
计算机科学
噪音(视频)
相(物质)
连贯性(哲学赌博策略)
激光器
散斑噪声
补偿(心理学)
光谱密度
噪声地板
参数统计
噪声测量
宽带
剪切照相
降噪
相对强度噪声
信号处理
相位恢复
斑点图案
噪声功率
航程(航空)
算法
激光功率缩放
均衡(音频)
信噪比(成像)
电子工程
干涉测量
空间滤波器
量子噪声
背景噪声
相位调制
数字信号处理
功率(物理)
噪声谱密度
物理
作者
Jasper Riebesehl,David C. Nak,Darko Zibar
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2025-09-24
卷期号:33 (21): 43718-43718
被引量:2
摘要
Self-heterodyne techniques are widely used for laser phase noise characterization due to their simple experimental setup and the removal need for a reference laser. However, when investigating low-noise lasers, optical delay paths shorter than the laser coherence length become necessary. This introduces interference patterns that distort the measured phase noise spectrum. To compensate for this distortion, we introduce a robust data-driven digital signal processing routine that integrates a kernel-based regression model into a phase noise power spectral density (PN-PSD) equalization framework. Unlike conventional compensation methods that rely on simplified phase noise models, our approach automatically adapts to complex and hard-to-model laser lineshapes by using Kernel Ridge Regression with automatic hyperparameter optimization. This approach effectively removes the interference artifacts and provides accurate PN-PSD estimates. We demonstrate the method's accuracy and effectiveness through simulations and via experimental measurements of two distinct low-noise lasers. The method's applicability to a broad range of lasers, minimal hardware requirements, and improved accuracy make this approach ideal for improving routine phase noise characterizations.
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