Hermite-Gaussian multi-mode excitation in spatial gain shaping approaches for laser resonators

Fuente: arXiv
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Autori principali: Zwilich, Michael, Fallnich, Carsten
Natura: Preprint
Pubblicazione: 2025
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author Zwilich, Michael
Fallnich, Carsten
author_facet Zwilich, Michael
Fallnich, Carsten
contents This study explores the excitation of transverse laser modes through spatial gain shaping, while focusing on the boundary between selective single-mode and multi-mode lasing. By deliberately reducing the similarity between intensity distributions of pump and laser mode, it was studied, if and which other modes are excited besides the target mode, and how the modes compete for the spatially distributed gain. Analysis of the usually unwanted multi-mode lasing revealed characteristic properties of pump distributions adapted to Hermite-Gaussian $\text{HG}_{m,0}$ modes: a center-heavy pump distribution at first distinctly excites the target mode and eventually low-order modes, whereas an eccentric pump distribution reduces the lasing threshold at the expense of distinction to the neighboring modes. By understanding why certain gain distributions do not excite a single mode, we infer guidelines for the design of pump patterns in spatial gain shaping approaches.
format Preprint
id arxiv_https___arxiv_org_abs_2503_02363
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hermite-Gaussian multi-mode excitation in spatial gain shaping approaches for laser resonators
Zwilich, Michael
Fallnich, Carsten
Optics
Applied Physics
This study explores the excitation of transverse laser modes through spatial gain shaping, while focusing on the boundary between selective single-mode and multi-mode lasing. By deliberately reducing the similarity between intensity distributions of pump and laser mode, it was studied, if and which other modes are excited besides the target mode, and how the modes compete for the spatially distributed gain. Analysis of the usually unwanted multi-mode lasing revealed characteristic properties of pump distributions adapted to Hermite-Gaussian $\text{HG}_{m,0}$ modes: a center-heavy pump distribution at first distinctly excites the target mode and eventually low-order modes, whereas an eccentric pump distribution reduces the lasing threshold at the expense of distinction to the neighboring modes. By understanding why certain gain distributions do not excite a single mode, we infer guidelines for the design of pump patterns in spatial gain shaping approaches.
title Hermite-Gaussian multi-mode excitation in spatial gain shaping approaches for laser resonators
topic Optics
Applied Physics
url https://arxiv.org/abs/2503.02363