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Subaru Coronagraphic Extreme-AO (SCExAO) Wavefront Control: Current Status and Ongoing Developments

机译:斯巴鲁冠冕极光(AO)(SCExAO)波前控制:现状和持续发展

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Exoplanet imaging requires excellent wavefront correction and calibration. At the Subaru telescope this is achieved using the 188-clement facility adaptive optics system(AO188) feeding the Subaru Coronagraphic Extreme Adaptive Optics (SCExAO) instrument; a multipurpose instrument built to deliver high contrast images of planets and disks around nearby stars. AO188 offers coarse correction while SCExAO performs fine correction and calibration of 1000 modes. The full system achieves ~90%Strehl Ratio in H-band and diffraction limited images. A new Real Time Computer allowing higher performance between SCExAO and AO188 is currently implemented. Future upgrades will include a new Pyramid Wavefront Sensor and (64x64) DM to achieve extreme AO correction inside AO188. We are progressing in the development of predictive control and sensor fusion algorithms across the system to improve performance and calibration. With the new upgrades, SCExAO will be able to image giant plan-ets in reflected light with Subaru and validate technologies necessary to image habitable Earth-like planets with the Thirty Meter Telescope (TMT).
机译:系外行星成像需要出色的波前校正和校准。在斯巴鲁望远镜中,这是通过为斯巴鲁日冕极度自适应光学系统(SCExAO)仪器提供188头设施的自适应光学系统(AO188)来实现的;一种多用途仪器,旨在提供高对比度的行星和附近恒星周围的磁盘的图像。 AO188提供粗略校正,而SCExAO执行1000种模式的精细校正和校准。完整的系统在H波段和衍射受限图像中可达到约90%的斯特列尔比。当前正在实现一种新的实时计算机,该计算机可以在SCExAO和AO188之间提供更高的性能。未来的升级将包括新的金字塔波前传感器和(64x64)DM,以实现AO188内部的极端AO校正。我们正在开发整个系统的预测控制和传感器融合算法,以改善性能和校准。通过新的升级,SCExAO将能够使用斯巴鲁在反射光下成像巨型行星,并使用三十米望远镜(TMT)验证对可居住类地球行星成像所需的技术。

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