Formation of Low-Coherent Beams in Nd:YVO4 and Nd:YAG Lasers

Pub Date : 2023-08-26 DOI:10.1007/s10946-023-10149-3
Alexey L. Koromyslov, Yuri V. Senatsky
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Abstract

Lasers with low-coherent radiation have attracted the attention since the first publications on this topic in the 1960s and up to the present time, thanks to their numerous applications. Compact lowcoherent lasers with a flow of the active medium through the pumped region can be done, using dense mixtures of solid particles and a liquid – slurry lasers. The preparation of slurry compositions based on particles like Nd :YVO4 or Nd :YAG crystal granules meets certain difficulties associated with the use of liquids having high refractive indices, n ≈ 2. Here, we study the properties of a perspective Nd-doped slurry laser in model experiments, comparing parameters of Nd :YVO4 and Nd :YAG slab lasers in compact plano-spherical resonators with and without a cuvette-diffuser on an immersion mixture of LiF crystal microparticles and isobutyl alcohol, n ≈ 1.39. At a laser diode pump power of 100 W, these lasers (without a cuvette) emit, in a quasicontinuous multimode regime, 1 ms pulses of low-coherent radiation (⋋ ≈ 1064 nm) with a divergence of 20 – 40 mrad and the 21 – 47 W power at the 10 Hz repetition rate. Under the same pumping conditions, we obtain a low-coherent radiation with the 1 – 6 W power and divergence up to 100 mrad in these lasers with a cuvette-diffuser. The spatial coherence of these lasers under changes in the pump current, pump spot sizes, and the state of immersion in the cuvette is estimated from the contrast C of the speckle patterns produced by the radiation. Also, we register C values in the region 0.02 0.04, comparable to the thermal sources contrast. The presented scheme demonstrates low-coherent Nd :YVO4 and Nd :YAG lasers and show the feasibility of creating compact LD-pumped slurry lasers.

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Nd:YVO4和Nd:YAG激光器中低相干光束的形成
自20世纪60年代首次发表这一主题以来,低相干辐射激光器由于其众多的应用而引起了人们的注意。紧凑的低相干激光器与流动的有效介质通过泵浦区可以做到,使用固体颗粒和液体浆激光器的密集混合物。基于Nd:YVO4或Nd:YAG晶体颗粒的浆料组合物的制备遇到了与使用具有高折射率(n≈2)的液体相关的某些困难。在模型实验中,我们研究了透视掺钕浆料激光器的特性,比较了Nd:YVO4和Nd:YAG板状激光器在有和没有试管扩散器的紧凑平面球谐振腔中,在LiF晶体微粒和异丁醇(n≈1.39)的浸没混合物上的参数。在激光二极管泵浦功率为100 W的情况下,这些激光器(没有小管)在准连续的多模状态下发射1 ms的低相干辐射脉冲(≈1064 nm),发散度为20 - 40 mrad,功率为21 - 47 W,重复频率为10 Hz。在相同的泵浦条件下,我们获得了功率为1 ~ 6w的低相干辐射,散度高达100mrad。这些激光器在泵浦电流、泵浦光斑大小和在试管中浸没状态变化下的空间相干性由辐射产生的散斑图案的对比度C估计。此外,我们在0.02 - 0.04区域记录了C值,与热源对比相当。该方案演示了低相干Nd:YVO4和Nd:YAG激光器,并显示了创建紧凑的ld泵浦浆激光器的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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