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Investigation of Density Perturbations in Molecular Nitrogen Formed by Pulsed Optical Lattices

机译:脉冲光学晶格形成的分子氮中的密度扰动研究

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A complimentary experimentalumerical investigation on the effect of counter-propagating pulsed lasers on molecular nitrogen was conducted. The experiment verified published theoretical predictions of the effect of laser intensity and gas pressure on the magnitude of induced density perturbations in the gas using a coherent Rayleigh-Brillouin scattering technique. The investigation further verified the use of a modified version of the SMILE DSMC code for more robust prediction of the effect of a non-resonant pulsed optical lattice on a neutral gas. The ambient pressure of molecular nitrogen was varied from 100 torr to 760 torr and the pump laser energy was varied from 2 mJ to 25 mj per pulse. The resulting scattered signal from the experiment was measured and compared with numerical predictions. Assuming that the signal of the experiment is proportional to the probe intensity and the square of the density perturbations induced by the pump lasers, the results of the experiment qualitatively support both theoretical predictions and numerical simulations.
机译:对反向传播的脉冲激光对分子氮的影响进行了互补的实验/数值研究。该实验使用相干瑞利-布里渊散射技术验证了已发表的有关激光强度和气压对气体中感应密度扰动幅度影响的理论预测。调查进一步验证了使用SMILE DSMC代码的修改版本来更可靠地预测非谐振脉冲光学晶格对中性气体的影响。分子氮的环境压力在100托至760托之间变化,泵浦激光能量每脉冲在2 mJ至25 mj之间变化。测量了实验产生的散射信号,并将其与数值预测值进行了比较。假设实验的信号与探测强度和泵浦激光器引起的密度扰动的平方成正比,则实验的结果定性地支持理论预测和数值模拟。

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