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In situ measurements of Raman scattering in clear ocean water

机译:清澈海水中拉曼散射的原位测量

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摘要

We have further developed and improved the prototype oceanic Fraunhofer line discriminator by using a well-protected fiber-optic-wire cable and in-water electronic housing. We conducted a series of in situ measurements in clear ocean water in the Florida Straits. By comparing the reduced data with the Monte Carlo simulation results, we verify the Raman scattering coefficient B-r with an excitation wavelength at 488 nm to be 2.6 x 10(-4) m(-1) [Appl. Opt. 29, 71-84 (1990)], as opposed to 14.4 x 10(-4) m(-1) [Appl. Opt. 14, 2116-2120 (1975)]. The wavelength dependence of the Raman scattering coefficient is found to have an insignificant effect on the in-water Light field. Pie also discuss factors that lead to errors. This study can be used as a basis for inelastic light scattering in the radiative transfer theory and will allow other inelastic light, e.g., fluorescence, to be detected with in situ measurements. (C) 1997 Optical Society of America.
机译:通过使用受到良好保护的光纤电缆和水下电子外壳,我们进一步开发和改进了原型海洋弗劳恩霍夫线鉴别器。我们在佛罗里达海峡的清澈海水中进行了一系列原位测量。通过将简化后的数据与蒙特卡洛模拟结果进行比较,我们验证了在488 nm处激发波长的拉曼散射系数B-r为2.6 x 10(-4)m(-1)[Appl。选择。 29,71-84(1990)],而不是14.4 x 10(-4)m(-1)[Appl。选择。 14,2116-2120(1975)]。发现拉曼散射系数的波长依赖性对水中的光场影响不大。派还讨论了导致错误的因素。该研究可以用作辐射传递理论中非弹性光散射的基础,并将允许通过原位测量来检测其他非弹性光,例如荧光。 (C)1997年美国眼镜学会。

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