Performance of Keck Adaptive Optics with Sodium Laser Guide Stars

D. Gavel, S. Olivier, J. Brase
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Abstract

The Keck telescope adaptive optics system is designed to optimize performance in the 1 to 3 micron region of observation wavelengths (J, H, and K astronomical bands). The system uses a 349 degree of freedom deformable mirror, so that the interactuator spacing is 56 cm as mapped onto the 10 meter aperture. 56 cm is roughly equal to r0 at 1.4 microns, which implies the wavefront fitting error is 0.52 (λ/2π)(d/r0)5/6 = 118 nm rms. This is sufficient to produce a system Strehl of 0.74 at 1.4 microns if all other sources of error are negligible, which would be the case with a bright natural guidestar and very high control bandwidth. Other errors associated with the adaptive optics system will however contribute to Strehl degradation, namely, servo bandwidth error due to inability to reject all temporal frequencies of the aberrated wavefront, wavefront measurement error due to finite signal-to-noise ratio in the wavefront sensor, and, in the case of a laser guidestar, the so-called cone effect where rays from the guidestar beacon fail to sample some of the upper atmosphere turbulence. Cone effect is mitigated considerably by the use of the very high altitude sodium layer guidestar (90 km altitude), as opposed to Rayleigh beacons at 20 km. However, considering the Keck telescope’s large aperture, this is still the dominating wavefront error contributor in the current adaptive optics system design.
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钠激光导星的Keck自适应光学性能
凯克望远镜自适应光学系统在观测波长(J、H、K天文波段)的1 ~ 3微米范围内进行优化设计。该系统使用了一个349自由度的可变形镜,因此,在映射到10米孔径上的相互执行器间距为56厘米。在1.4微米处,56 cm近似等于r0,即波前拟合误差为0.52 (λ/2π)(d/r0)5/6 = 118 nm rms。如果所有其他误差源可以忽略不计,这足以产生1.4微米处0.74的系统Strehl,这将是明亮的天然导星和非常高的控制带宽的情况。然而,与自适应光学系统相关的其他误差将导致Strehl退化,即由于无法抑制畸变波前的所有时间频率而导致的伺服带宽误差,由于波前传感器中有限的信噪比而导致的波前测量误差,以及在激光导星的情况下,来自导星信标的光线无法采样一些高层大气湍流的所谓锥效应。与20公里的瑞利信标相比,使用非常高的钠层导星(90公里高度)可以大大减轻锥效应。然而,考虑到凯克望远镜的大口径,这仍然是当前自适应光学系统设计中主要的波前误差贡献者。
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The Palomar Adaptive Optics System Performance of Keck Adaptive Optics with Sodium Laser Guide Stars Conceptual Design for a User-Friendly Adaptive Optics System at Lick Observatory First Results of a Polychromatic Artificial Sodium Star for the Correction of Tilt Laser Systems for the Generation of Sodium Layer Guide Stars
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