论文标题
频率搅动连续波钠激光导向星星
Frequency chirped continuous-wave sodium laser guide stars
论文作者
论文摘要
我们在数值上研究了一种使用一维原子冷却原理增加连续波激光导恒星的光子返回通量的方法。该方法依赖于在后坐力引起的钠原子速度变化之后,将激光器chir缩在较高的频率上,这会增加多普勒分布中可用于激光激发的原子种群。这种效应的效率随着中层的两个原子碰撞之间的平均原子激发数量而增长。我们找到了最大化回流通量并评估La Palma操作的效果的参数。根据我们的模拟,最佳的CHIRP速率位于0.8-1.0 MHz/$μ$ s之间,并且使用当前20级W级指南激光器可以实现高达60%的钠导向星的荧光。
We numerically study a method to increase the photon return flux of continuous-wave laser guide stars using one-dimensional atomic cooling principles. The method relies on chirping the laser towards higher frequencies following the change in velocity of sodium atoms due to recoil, which raises atomic populations available for laser excitation within the Doppler distribution. The efficiency of this effect grows with the average number of atomic excitations between two atomic collisions in the mesosphere. We find the parameters for maximizing the return flux and evaluate the performance of chirping for operation at La Palma. According to our simulations, the optimal chirp rate lies between 0.8-1.0 MHz/$μ$s and an increase in the fluorescence of the sodium guide star up to 60% can be achieved with current 20 W-class guide star lasers.