Tunable optical parametric oscillator based on ZnGeP2 crystal for greenhouse gas remote sensing systems

IF 1.9 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Frontiers in Physics Pub Date : 2024-05-28 DOI:10.3389/fphy.2024.1404504
N. N. Yudin, M. M. Zinoviev, S. N. Podzyvalov, V. S. Kuznetsov, E. S. Slyunko, A. B. Lysenko, A. Yu. Kalsin, A. Sh. Gabdrakhmanov, S. V. Yakovlev, S. A. Sadovnikov, O. A. Romanovskii, H. Baalbaki
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Abstract

This work is devoted to the development of a compact source of coherent radiation with frequency-energy characteristics and a spectral generation range that allows remote determination of background concentrations of greenhouse gases in the atmosphere. The aim of this work was to create a frequency parametric converter based on ZGP, pumped by Ho:YAG laser radiation. For use as a source in a mobile lidar for remote determination of the concentration of greenhouse gases in the atmosphere. In the course of the research, a layout of an Optical parametric oscillator OPO based on a ZGP crystal with Ho:YAG laser radiation pumping was developed. The system’s continuous failure-free operation time was 1.5 h at a pulse repetition rate of 10 kHz and a pulse energy of the generated radiation of 0.08 mJ. The tuning range of the OPO was from 3.3 to 5 μm when using a Lyot filter. The losses from the average generation power when the Lyot filter was introduced into the resonator were 30%. At the same time, it was possible to achieve a linewidth of the generated radiation of 0.7 nm. The divergence of the generated radiation did not exceed 1.5 mrad.The absorption spectrum of gases CO2, CH4, N2O, CO in a gas cell was simulated for the entire generation range of the ZnGeP2-based OPO. As a result of the simulation, the most intense absorption lines of gases CO2, CH4, N2O, CO in the OPO tuning range were revealed, the central wavelengths of the absorption lines and their spectral width were determined.
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基于 ZnGeP2 晶体的可调谐光参量振荡器,用于温室气体遥感系统
这项工作致力于开发一种具有频率-能量特性和光谱生成范围的紧凑型相干辐射源,以便远程测定大气中温室气体的本底浓度。这项工作的目的是创建一个基于 ZGP 的频率参数转换器,由 Ho:YAG 激光辐射泵浦。作为移动激光雷达的光源,用于远程测定大气中温室气体的浓度。在研究过程中,开发出了一种基于 ZGP 晶体、由 Ho:YAG 激光辐射泵浦的光参量振荡器 OPO 布局。在脉冲重复频率为 10 kHz、产生的辐射脉冲能量为 0.08 mJ 的条件下,该系统的连续无故障运行时间为 1.5 h。使用 Lyot 滤波器时,OPO 的调谐范围为 3.3 至 5 μm。在谐振器中引入 Lyot 滤波器时,平均发电功率的损耗为 30%。同时,所产生辐射的线宽为 0.7 纳米。在基于 ZnGeP2 的 OPO 的整个生成范围内,模拟了气体池中 CO2、CH4、N2O、CO 气体的吸收光谱。模拟结果揭示了 OPO 调谐范围内 CO2、CH4、N2O、CO 气体最强烈的吸收线,并确定了吸收线的中心波长及其光谱宽度。
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来源期刊
Frontiers in Physics
Frontiers in Physics Mathematics-Mathematical Physics
CiteScore
4.50
自引率
6.50%
发文量
1215
审稿时长
12 weeks
期刊介绍: Frontiers in Physics publishes rigorously peer-reviewed research across the entire field, from experimental, to computational and theoretical physics. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, engineers and the public worldwide.
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