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Development of a Long-Wave Infrared Laser Source Based on Optical Parametric Amplification in ZnGeP2

机译:基于光学参量放大的ZnGeP 2 长波红外激光源的研制

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摘要

This thesis presents the design and implementation of an 8 μm laser source based on nonlinear conversion in ZGP. ZGP is an attractive material for this purpose due to its high nonlinear coefficient, good transmission at the relevant wavelengths, and high thermal conductivity.The configuration was a master oscillator/power amplifier (MOPA) system, including an optical parametric oscillator (OPO) with a 3-mirror ring resonator that allows two passes of the beams through the same nonlinear crystal. The power amplifier consisted of two optical parametric amplifiers (OPAs). The MOPA system was pumped at 2.05 μm by a Q-switched Ho:YLF laser.Each stage of the MOPA system was investigated with computational simulations to optimize the system for providing pulses at 8 μm wavelength with high energy and good beam quality.The experimental results were in good agreement with the simulations.When pumping with 360 mJ, the maximum energy achieved at 8 μm was 45 mJ with M2 = 3.1.The system was tested with different combinations of crystal lengths, and with both signal and idler as seeds, and only signal as seed in the power amplifier system. A conference paper describing the OPO has been accepted for presentation at Mid-Infrared Coherent Sources (MICS).
机译:本文提出了基于ZGP非线性转换的8μm激光源的设计与实现。 ZGP具有很高的非线性系数,在相关波长下的良好透射率和高导热性,因此是一种有吸引力的材料。配置为主振荡器/功率放大器(MOPA)系统,其中包括一个光学参量振荡器(OPO)和一个三镜环形谐振器,允许光束两次通过同一非线性晶体。功率放大器由两个光学参量放大器(OPA)组成。通过调Q的Ho:YLF激光器将MOPA系统泵浦到2.05μm,并通过计算仿真研究了MOPA系统的每个阶段,以优化该系统以提供高能量和良好光束质量的8μm波长的脉冲。结果与仿真结果吻合良好。以360 mJ泵浦时,在8μm处获得的最大能量为45 mJ,M2 = 3.1。该系统使用不同晶体长度组合以及信号和惰轮作为种子进行了测试,并且只有信号作为功率放大器系统中的种子。描述OPO的会议论文已被接受在中红外相干源(MICS)上发表。

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    Bakkland Ingrid Anette;

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  • 年度 2016
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  • 正文语种 eng
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