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Status of the ARGOS project

机译:ARGOS项目的状态

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摘要

ARGOS is the Laser Guide Star and Wavefront sensing facility for the Large Binocular Telescope. With first laser light on sky in 2013, the system is currently undergoing commissioning at the telescope. We present the overall status and design, as well as first results on sky. Aiming for a wide field ground layer correction, ARGOS is designed as a multi-Rayleigh beacon adaptive optics system. A total of six powerful pulsed lasers are creating the laser guide stars in constellations above each of the LBTs primary mirrors. With a range gated detection in the wavefront sensors, and the adaptive correction by the deformable secondary's, we expect ARGOS to enhance the image quality over a large range of seeing conditions. With the two wide field imaging and spectroscopic instruments LUCI1 and LUCI2 as receivers, a wide range of scientific programs will benefit from ARGOS. With an increased resolution, higher encircled energy, both imaging and MOS spectroscopy will be boosted in signal to noise by a large amount. Apart from the wide field correction ARGOS delivers in its ground layer mode, we already foresee the implementation of a hybrid Sodium with Rayleigh beacon combination for a diffraction limited AO performance.
机译:ARGOS是大型双筒望远镜的激光导星和波前感测设备。随着2013年第一颗激光射向天空,该系统目前正在望远镜中进行调试。我们介绍了总体状态和设计,以及在空中的初步结果。为了进行宽视场地面层校正,ARGOS被设计为多瑞利信标自适应光学系统。总共有六个强大的脉冲激光器在每个LBT主镜上方的星座中形成激光导星。通过波前传感器中的距离门控检测以及可变形次级传感器的自适应校正,我们期望ARGOS在大范围的观察条件下提高图像质量。使用LUCI1和LUCI2这两种广角成像和光谱仪器,可以从ARGOS中受益。随着分辨率的提高,更高的环绕能量,成像和MOS光谱将大大提高信噪比。除了ARGOS在其地面层模式下提供的宽视场校正外,我们已经预见到将混合钠与Rayleigh信标结合使用,以实现衍射受限的AO性能。

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