论文标题
变质光谐振器,以增强大型激光束
Degenerate optical resonator for the enhancement of large laser beams
论文作者
论文摘要
大尺寸梁(几毫米)可以共鸣的增强腔具有多种应用,特别是在原子物理学中。但是,以紧凑的几何形状(小于一米长)到达大型腰部通常会使谐振器接近变性极限。在这里,我们在实验中研究了一个长44厘米长的堕胎光腔,由镜头焦平面上的两个平坦镜子组成,在中间精美的状态下($ \ sim 150 $)。我们研究纵向未对准对光学增益的影响,对于高达5.6 〜mm的不同输入梁腰,并找到与基于ABCD基于高斯光束的ABCD传播的模型的预测一致的数据。我们达到1.4 〜mm的腰围的光学增益为26,这可能会对多种应用,特别是原子干涉法产生影响。我们使用角光谱方法来研究大型腰部的光学增益减少,以考虑光学畸变的影响,这在这种退化的腔中起着重要作用。我们的计算定量地重现了实验数据,并将提供一个关键工具,用于设计接近退化极限的增强腔。作为例证,我们讨论了该谐振几何形状在具有顶部帽子强度曲线的激光束上的应用。
Enhancement cavities where a beam of large size (several millimeters) can resonate have several applications, in particular in atomic physics. However, reaching large beam waists in a compact geometry (less than a meter long) typically brings the resonator close to the degeneracy limit. Here we experimentally study a degenerate optical cavity, 44-cm long and consisting of two flat mirrors placed in the focal planes of a lens, in a regime of intermediate finesse ($\sim 150$). We study the impact of the longitudinal misalignement on the optical gain, for different input beam waists up to 5.6~mm, and find data consistent with the prediction of a model based on ABCD propagation of Gaussian beams. We reach an optical gain of 26 for a waist of 1.4~mm, which can have an impact on several applications, in particular atom interferometry. We numerically investigate the optical gain reduction for large beam waists using the angular spectrum method to consider the effects of optical aberrations, which play an important role in such a degenerate cavity. Our calculations quantitatively reproduce the experimental data and will provide a key tool for designing enhancement cavities close to the degeneracy limit. As an illustration, we discuss the application of this resonator geometry to the enhancement of laser beams with top-hat intensity profiles.