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Modeling the response of mesospheric sodium to pulsed-laser excitation

机译:模拟腰椎钠对脉冲激光激发的响应

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摘要

A simulation modeling excitation of the sodium D-2 line by nanosecond time scale pulsed lasers is described. By numerically integrating transition rates in the sodium hyperfine structure, the return flux per sodium atom is predicted as a function of laser power. The simulation should be useful for studies of mesospheric sodium and adaptive optics. Applications include the estimation of sodium column density from lidar return flux, and of laser guide star brightness for different pulsed laser formats. The simulation assumes that the pulse repetition frequency is sufficiently low (smaller than a few kilohertz) that atomic collisions restore local thermodynamic equilibrium between pulses. It is also assumed that the pulse length is short compared to the Larmor precession time scale. The numerical results are well-approximated by a simple analytic model for a three-level atom. The number of emitted photons is found to be primarily dependent on the product of the length of the laser pulse and the energy density. (C) 2017 Optical Society of America
机译:描述了纳秒级脉冲激光激发钠D-2线的仿真模型。通过数值积分钠超精细结构中的跃迁速率,预测了每个钠原子的返回通量与激光功率的函数关系。这一模拟对于研究中间层钠和自适应光学应该是有用的。应用包括根据激光雷达返回通量估算钠柱密度,以及不同脉冲激光格式的激光导星亮度。模拟假设脉冲重复频率足够低(小于几千赫兹),原子碰撞可以恢复脉冲之间的局部热力学平衡。还假设脉冲长度比拉莫尔进动时间尺度短。数值结果与一个三能级原子的简单解析模型非常接近。研究发现,发射光子的数量主要取决于激光脉冲长度和能量密度的乘积。(C) 2017美国光学学会

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