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Cassegrain and Nasmyth adaptive optics systems of 8.2-m Subaru Telescope

机译:8.2米斯巴鲁望远镜的Cassegrain和Nasmyth自适应光学系统

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The performance of the Cassegrain Adaptive Optics (AO) system of the 8.2 m Subaru Telescope is reported. The system is based on a curvature wavefront sensor with 36 photon-counting avalanche photodiode modules and a bimorph wavefront correcting deformable mirror with 36 driving electrodes. This AO system has been in service since 2002 April for two open-use instruments, an infrared camera and spectrograph (IRCS) and a coronagraph imager with adaptive optics (CIAO). The Strehl ratio in the K-band is around 0.3 when a bright guide star is available under 0.4" seeing condition. High sensitivity of the wavefront sensor allows significant improvement in the image quality, even for faint guide stars down to R = 18 mag. The design of the new Nasmyth Adaptive Optics system with 188 control elements under construction is described. This new system with fivefold increase in the number of control elements will provide twice higher Strehl ratio of 0.7. To increase the sky coverage for this new system, a power laser system to produce an artificail guide star in the upper atmosphere is also under construction. The AO system with laser guide capability enables the coverage up to 80% of the entire sky and offers diffraction limited observation for almost any target in the sky. An all solid-state 4W laser to generate the sodium D line emission by summing the two YAG laser frequencies is under development. The generated laser beam is tranmitted through a photonic crystal fiber to the laser launching telescope attached at the backside of the secondary mirror. Expected performance of this laser guide Nasmyth AO system is shown.
机译:报告了8.2 m斯巴鲁望远镜的Cassegrain自适应光学(AO)系统的性能。该系统基于具有36个光子计数雪崩光电二极管模块的曲率波前传感器和具有36个驱动电极的双压电晶片波前校正可变形反射镜。该AO系统自2002年4月起投入使用,用于两台开放使用的仪器,一台红外热像仪和光谱仪(IRCS)和一个带有自适应光学器件的日冕仪成像仪(CIAO)。当在0.4英寸的可见条件下有一颗明亮的导星时,K波段的斯特列尔比约为0.3。波前传感器的高灵敏度可以使图像质量得到显着改善,即使对于低至R = 18 mag的微弱的导星也是如此。描述了正在建设中的具有188个控制元件的新的纳斯米斯自适应光学系统的设计,该新系统的控制元件数量增加了五倍,斯特雷尔比率也提高了两倍,即0.7。在高空产生人造导星的高功率激光系统也在建设中,具有激光导引能力的AO系统可以覆盖整个天空的80%,并且几乎可以对天空中的任何目标进行衍射限制的观测。通过将两个YAG激光频率相加来产生钠D线发射的全固态4W激光器正在开发中,所产生的激光束会通过光子传输光纤连接到辅助反射镜背面的激光发射望远镜。显示了该激光导管Nasmyth AO系统的预期性能。

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