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The ARGOS laser system: green light for ground layer adaptive optics at the LBT

机译:Argos激光系统:LBT的地层自适应光学绿灯

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We report on the development of the laser system of ARGOS, the multiple laser guide star adaptive optics system for the Large Binocular Telescope (LBT). The system uses a total of six high powered, pulsed Nd:YAG lasers frequency-doubled to a wavelength of 532 nm to generate a set of three guide stars above each of the LBT telescopes. The position of each of the LGS constellations on sky as well as the relative position of the individual laser guide stars within this constellation is controlled by a set of steerable mirrors and a fast tip-tilt mirror within the laser system. The entire opto-mechanical system is housed in two hermetically sealed and thermally controlled enclosures on the SX and DX side of the LBT telescope. The laser beams are propagated through two refractive launch telescopes which focus the beams at an altitude of 12 km, creating a constellation of laser guide stars around a 4 arcminute diameter circle by means of Rayleigh scattering. In addition to the GLAO Rayleigh beacon system, ARGOS has also been designed for a possible future upgrade with a hybrid sodium laser - Rayleigh beacon combination, enabling diffraction limited operation. The ARGOS laser system was successfully installed at the LBT in April 2013. Extensive functional tests have been carried out and have verified the operation of the systems according to specifications. The alignment of the laser system with respect to the launch telescope was carried out during two more runs in June and October 2013, followed by the first propagation of laser light on sky in November 2013.
机译:我们报告了Argos激光系统的开发,大双筒望远镜(LBT)的多激光导灯自适应光学系统。该系统使用总共六个高功率,脉冲Nd:YAG激光器频率翻转到532nm的波长,以在每个LBT望远镜上方产生一组三个导向恒星。每个LGS星座上的天空中的每个位置以及该星座内的各个激光导向塔的相对位置由激光系统内的一组可转向镜和快速尖端倾斜镜控制。整个光电系统安装在LBT望远镜的SX和DX侧的两个气密密封和热控箱中。激光束通过两个折射发射望远镜传播,该折射伸缩望远镜将光束聚焦在12公里的高度,通过瑞利散射形成围绕4个Arcminute直径圆的激光导向恒星。除了Glao Rayleigh Beacon系统之外,Argos还设计用于可能的未来升级,具有混合钠激光 - 瑞利信标组合,使衍射有限的操作。 Argos激光系统于2013年4月成功安装了LBT。已经进行了广泛的功能测试,并根据规格验证了系统的操作。在2013年6月和10月的两次运行过程中,激光系统相对于发射望远镜的对准,其次是2013年11月在天空上的第一次激光传播。

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