First Results of a Polychromatic Artificial Sodium Star for the Correction of Tilt

H. Friedman, R. Foy, M. Tallon, A. Migus
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引用次数: 1

Abstract

With the present state of technology, the tilt component of a aberrated stellar wavefront which has been distorted by atmospheric turbulence cannot be ascertained by an artificial guide star. The absolute position of the artificial guide star cannot be determined since it wanders on the uplink portion of its propagation and there is no way, at least with a single receiving telescope, to distinguish an undetermined position of a guide star from tilt in the wavefront. In conventional adaptive optics systems, a natural star is needed to supply the tilt information in addition to the higher order corrections supplied by an artificial guide star. The probability of finding a suitably bright natural guide star for tilt correction is not significantly higher than for higher order correction despite the fact that the entire telescope area is used and both the tilt anisoplanatic angle and integration time are considerably larger. Since the tilt contributes ≈90% of the phase variance, the accuracy in the tilt measurement has to be much greater than for higher order corrections1. In particular at galactic latitudes above the galactic plane, or at visible wavelengths, the sky coverage for a tilt star becomes unacceptable for most applications.
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多色人造钠星校正倾斜的初步结果
在目前的技术条件下,由于大气湍流的影响,像差恒星波前的倾斜分量无法通过人工导星来确定。人造导星的绝对位置无法确定,因为它在其传播的上行部分徘徊,并且至少使用单个接收望远镜无法区分导星的未确定位置和波前倾斜。在传统的自适应光学系统中,除了人工导星提供的高阶校正外,还需要一颗天然恒星提供倾斜信息。尽管使用了整个望远镜面积,而且倾斜各向异性角和积分时间都大得多,但找到合适亮度的自然导星进行倾斜校正的概率并不比高阶校正高得多。由于倾斜对相位方差的贡献约为90%,因此倾斜测量的精度必须远远高于高阶校正1。特别是在银河平面以上的银河纬度,或在可见光波段,倾斜恒星的天空覆盖对大多数应用来说是不可接受的。
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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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