论文标题

使用激光导恒星测量钠密度结构

Measuring line-of-sight sodium density structure using laser guide stars

论文作者

Hellemeier, Joschua A., Calia, Domenico Bonaccini, Hickson, Paul, Otarola, Angel, Pfrommer, Thomas

论文摘要

可以通过连续监测沿视线的中层钠的垂直密度结构来改善采用钠激光导向星的自适应光学系统的性能。我们证明,可以通过连续波(CW)激光器的振幅调制来检索钠密度曲线。在大型天顶望远镜(LZT)进行的实验中,ESO的Wendelstein Raman-Fibre激光器通过伪随机二进制序列进行了振幅调节,并通过与Laser导向星的观察到的返回信号的调制模式的交叉相交获得了曲线。为了进行比较,使用LZT的LiDAR系统同时获得了高分辨率曲线。通过这两种技术获得的轮廓显示出噪声污染,但发现在测量误差内同意。作为进一步的检查,还对几个LiDAR轮廓进行了比较,并通过使用远程望远镜同时观察获得的观测值对激光羽流从侧面进行映像。可以通过将返回的激光的一小部分转移到光子计数检测器的一小部分来实现调制的CW LIDAR技术。理论分析和数值模拟表明,对于50%的调制强度,可以从单个激光导恒星中每5 s检索每5 s钠的高度,其准确性将诱导ELT的相应波前误差,而TMT和GMT的ELT则且小于30 nm。如果使用多个激光导向星,则所需的调制振幅将较小。

The performance of adaptive optics systems employing sodium laser guide stars can be improved by continuously monitoring the vertical density structure of mesospheric sodium along the line of sight. We demonstrate that sodium density profiles can be retrieved by amplitude modulation of continuous wave (CW) lasers. In an experiment conducted at the Large Zenith Telescope (LZT), ESO's Wendelstein Raman-fibre laser was amplitude-modulated with a pseudo-random binary sequence and profiles were obtained by cross-correlation of the modulation pattern with the observed return signal from the laser guide star. For comparison, high-resolution profiles were obtained simultaneously using the lidar system of the LZT. The profiles obtained by the two techniques show noise contamination, but were found to agree to within the measurement error. As a further check, a comparison was also made between several lidar profiles and those obtained by simultaneous observations using a remote telescope to image the laser plume from the side. The modulated CW lidar technique could be implemented by diverting a small fraction of the returned laser light to a photon counting detector. Theoretical analysis and numerical simulations indicate that, for 50 per cent modulation strength, the sodium centroid altitude could be retrieved every 5 s from a single laser guide star, with an accuracy which would induce a corresponding wavefront error of 50 nm for the ELT and less than 30 nm for the TMT and GMT. If multiple laser guide stars are employed, the required modulation amplitude will be smaller.

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