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Solar adaptive optics with the DKIST: status report

机译:太阳能自适应光学与DKIST:状态报告

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The DKIST wavefront correction system will be an integral part of the telescope, providing active alignment control, wavefront correction, and jitter compensation to all DKIST instruments. The wavefront correction system will operate in four observing modes, diffraction-limited, seeing-limited on-disk, seeing-limited coronal, and limb occulting with image stabilization. Wavefront correction for DKIST includes two major components: active optics to correct low-order wavefront and alignment errors, and adaptive optics to correct wavefront errors and high-frequency jitter caused by atmospheric turbulence. The adaptive optics system is built around a fast tip-tilt mirror and a 1600 actuator deformable mirror, both of which are controlled by an FPGA-based real-time system running at 2 kHz. It is designed to achieve on-axis Strehl of 0.3 at 500 nm in median seeing (r_0 = 7 cm) and Strehl of 0.6 at 630 nm in excellent seeing (r_0 = 20 cm). We present the current status of the DKIST high-order adaptive optics, focusing on system design, hardware procurements, and error budget management.
机译:DKIST波前校正系统将是望远镜的一个组成部分,为所有DKIST仪器提供主动对准控制,波前校正和抖动补偿。波前校正系统将以四种观察模式,衍射限制,看到限制在盘上,看到有限的冠状动脉,并且具有图像稳定的肢体。 DKIST的波前校正包括两个主要组件:主动光学器件,以纠正低阶波前和对准误差,以及自适应光学器件,以纠正由大气湍流引起的波前误差和高频抖动。自适应光学系统围绕快速尖端倾斜镜和1600致动器可变形镜构成,两者都是由在2kHz运行的FPGA的实时系统控制。它设计成在500nm处在500nm处实现0.3的轴刻度,在630nm处,优异的观察(r_0 = 20cm),在630nm处为0.6的稳定性。我们介绍了DKIST高阶自适应光学器件的当前状态,专注于系统设计,硬件采购和错误预算管理。

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