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水面上传播的波导模式的色散管理

Dispersion Management of Propagating Waveguide Modes on the Water Surface.

作者信息

Fu Shenhe, Zhou Jianying, Li Yongyao, Shemer Lev, Arie Ady

机构信息

Department of Optoelectronic Engineering, Jinan University, Guangzhou 510632, China.

School of Electrical Engineering, Faculty of Engineering, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

Phys Rev Lett. 2017 Apr 7;118(14):144501. doi: 10.1103/PhysRevLett.118.144501. Epub 2017 Apr 5.

Abstract

We report on the theoretical and experimental study of the generation of propagating waveguide modes on the water surface. These propagating modes are modulated in the transverse direction in a manner that satisfies boundary conditions on the walls of the water tank. It is shown that the propagating modes possess both anomalous and normal dispersion regimes, in contrast to the extensively studied zero mode that, in the case of deep water, only has normal dispersion with a fixed frequency independent dispersion coefficient. Importantly, by using a carrier frequency at which the group velocity dispersion crosses zero, a linear nonspreading and shape-preserving wave packet is observed. By increasing the wave steepness, nonlinear effects become pronounced, thereby enabling the first observation of linearly chirped parabolic water wave pulses in the anomalous dispersion regime. This parabolic wave maintains its linear frequency chirp and does not experience wave breaking during propagation.

摘要

我们报告了关于水面上传播的波导模式产生的理论和实验研究。这些传播模式在横向方向上以满足水箱壁边界条件的方式进行调制。结果表明,与广泛研究的零模式相比,传播模式同时具有反常色散和正常色散区域,在深水情况下,零模式仅具有固定频率独立色散系数的正常色散。重要的是,通过使用群速度色散为零的载波频率,可以观察到线性非扩展且形状保持的波包。通过增加波陡,非线性效应变得显著,从而首次在反常色散区域观察到线性啁啾抛物线形水波脉冲。这种抛物线形波在传播过程中保持其线性频率啁啾且不会发生波破碎。

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