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Temporal and frequency characteristics of a narrow light beam in sea water

机译:海水中窄光束的时间和频率特性

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摘要

The structure of a light field in sea water excited by a unidirectional point-sized pulsed source is studied by Monte Carlo technique. The pulse shape registered at the distances up to 120 m from the source on the beam axis and in its axial region is calculated with a time resolution of 1 ps. It is shown that with the increase of the distance from the source the pulse splits into two parts formed by components of various scattering orders. Frequency and phase responses of the beam are calculated by means of the fast Fourier transform. It is also shown that for higher frequencies, the attenuation of harmonic components of the field is larger. In the range of parameters corresponding to pulse splitting on the beam axis, the attenuation of harmonic components in particular spectral ranges exceeds the attenuation predicted by Bouguer law. In this case, the transverse distribution of the amplitudes of these harmonics is minimal on the beam axis. (C) 2016 Optical Society of America
机译:利用蒙特卡罗技术研究了单向点大小的脉冲源激发的海水中光场的结构。以1 ps的时间分辨率计算出在光束轴上距辐射源最多120 m的距离及其轴向区域中记录的脉冲形状。结果表明,随着距光源的距离的增加,脉冲分为由不同散射阶次的分量形成的两部分。光束的频率和相位响应通过快速傅立叶变换进行计算。还表明,对于更高的频率,磁场谐波分量的衰减更大。在对应于光束轴上脉冲分裂的参数范围内,特定频谱范围内谐波分量的衰减超过了布格定律预测的衰减。在这种情况下,这些谐波幅度的横向分布在光束轴上最小。 (C)2016美国眼镜学会

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