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Analysis of distribution characteristics of underwater optical soliton received beam

机译:水下光学孤子接收光束分布特性分析

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In order to obtain the receiving beam with more concentrated energy distribution, Monte Carlo method was used to study the receiving beam distribution characteristics of optical solitons as light sources. According to the characteristics of the optical soliton pulse, the expression of the initial sampling radius of the optical soliton is deduced, and the beam expansion characteristics and optical power density of the two soliton and Gaussian pulse light sources are simulated and analyzed. The results show that the optical soliton's receiving beam has a higher power density than the Gaussian pulsed beam, and it performs better in underwater anti-scattering, which provides theoretical support for the design of underwater receivers and underwater positioning.
机译:为了获得具有更集中能量分布的接收光束,Monte Carlo方法用于研究光学孤子的接收光束分布特性作为光源。 根据光学孤子脉冲的特性,推导出光学孤子的初始采样半径的表达,模拟并分析了两个孤子和高斯脉冲光源的光束膨胀特性和光功率密度。 结果表明,光学孤子的接收光束具有比高斯脉冲光束更高的功率密度,并且在水下防散射中表现更好,这为水下接收器和水下定位提供了理论支持。

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