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Self-focusing in the ocean using out-of-band phase conjugation

机译:使用带外相位共轭在海洋中自我聚焦

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Phase conjugation methods have been used in underwater acoustics because of their remarkable spatial self-focusing performance in inhomogeneous, dynamically changing environments. However, phase conjugation devices have stringent constraints such as acoustic transmitters and receivers working simultaneously in the same frequency band, which complicates the implementation of these devices and prevents their wide deployment in the ocean. Here, we introduce the out-of-band phase conjugation (OBPC) for ocean acoustics through which phase conjugation waves are generated at integer multiples of the incident wave frequency. The different bands translate into remarkably simple implementations while maintaining excellent spatial focusing in challenging shallow ocean environments. Furthermore, the resolution of OBPC is significantly higher than that of conventional phase conjugation. An interesting phenomenon typical to out-of-band phase conjugation is the generation of phantom paths along which some of the energy in the phase conjugated wave is focused. (C) 2020 Elsevier Ltd. All rights reserved.
机译:相位共轭方法已经在水下声学被使用,因为在不均匀的,动态变化的环境中的显着的空间自聚焦性能。然而,相位共轭的装置具有严格的限制,诸如声学发射器和接收在相同的频带,这些装置的实施复杂化,并且阻止了它们的广泛部署在海洋中同时工作。这里,我们介绍了带外相位共轭(OBPC),用于通过该相位共轭波的入射波频率的整数倍产生海洋声学。不同频带转换成非常简单的实施方式中,同时保持出色的空间在挑战浅海环境聚焦。此外,OBPC的分辨率比常规相位共轭的显著更高。一个有趣的现象典型到出带外相位共轭是沿其中的一些在相位共轭波的能量的聚焦路径幻象的产生。 (c)2020 elestvier有限公司保留所有权利。

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