[1] M DUBREUIL, P DELROT, I LEONARD et al. Exploring underwater target detection by imaging polarimetry and correlation techniques. Applied Optics, 52, 997-1005(2013).
[2] D M KOCAK, F R DALGLEISH, F M CAIMI et al. A focus on recent developments and trends in underwater imaging. Marine Technology Society Journal, 42, 52-67(2008).
[3] H KAUSHAL, G KADDOUM. Underwater optical wireless communication. IEEE Access, 4, 1518-1547(2016).
[4] S ARNON. Underwater optical wireless communication network. Optical Engineering, 49, 015001(2010).
[5] K KINJIRO. A model of the bottom boundary layer in water waves. Bulletion of the Earthquake Research Institute, 46, 75-123(1968).
[6] J A FLECK, J R MORRIS, M D FEIT. Time-dependent propagation of high energy laser beams through the atmosphere. Applied Physics, 10, 129-160(1976).
[7] V V NIKISHOV, V I NIKISHOV. Spectrum of turbulent fluctuations of the sea-water refraction index. International Journal of Fluid Mechanics Research, 27, 82-98(2000).
[8] R J HILL. Optical propagation in turbulent water. Journal of the Optical Society of America, 68, 1067-1072(1978).
[9] T M DILLON. The energetics of overturning structures: implication for the theory of fossil turbulence. Journal of Physical Oceanography, 14, 541-549(1984).
[10] A E GARGETT. Vertical eddy diffusivity in the ocean interior. Journal of Marine Research, 42, 359-393(1984).
[11] A E GARGETT, G HOLLOWAY. Sensitivity of the GFDL ocean model to different diffusivities for heat and salt. Journal of Physical Oceanography, 22, 1158-1177(1992).
[12] Y CHENG, V M CANUTO. Stably stratified shear turbulence: a new model for the energy dissipation length scale. Journal of the Atmospheric Sciences, 51, 2384-2396(1994).
[13] J XU, M TANG, D ZHAO. Propagation of electromagnetic non-uniformly correlated beams in the oceanic turbulence. Optics Communications, 331, 1-5(2014).
[14] J XU, D ZHAO. Propagation of a stochastic electromagnetic vortex beam in the oceanic turbulence. Optics & Laser Technology, 57, 189-193(2014).
[15] M TANG, D ZHAO. Spectral changes in stochastic anisotropic electromagnetic beams propagating through turbulent ocean. Optics Communications, 312, 89-93(2014).
[16] W ZHU, M TANG, D ZHAO. Propagation of multi-Gaussian Schell-model beams in oceanic turbulence. Optik, 127, 3775-3778(2016).
[17] Yongxin LIU, Ziyang CHEN, Jixiong PU. Propagation of stochastic electromagnetic high-order Bessel-Gaussian beams in the oceanic turbulence. Acta Physica Sinica, 66, 199-205(2017).
[18] Tengfei LU, Kailiang ZHANG, Zhijun WU et al. Propagation properties of elliptical vortex beams in turbulent ocean. Chinese Optics, 13, 323-332(2020).
[19] Tengfei LU, Yongxin LIU, Zhijun WU. Experimental investigation on propagation characteristics of vortex beams in underwater turbulence with different salinity. Chinese Optics, 15, 111-118(2022).
[20] Yanhong ZHANG, Tengfei LU, Yongxin LIU et al. Intensities of non-uniformly polarized beams in the oceanic turbulence. Laser Technology, 44, 310-314(2020).
[21] Bo TIAN, Yongxin LIU, Zenghui GAO et al. Propagation of partially coherent double-vortex beam in the oceanic turbulence. Journal of Optoelectronics·Laser, 30, 317-325(2019).
[22] L LU, X JI, X LI et al. Influence of oceanic turbulence on propagation characteristics of Gaussian array beams. Optik, 125, 7154-7161(2014).
[23] Ting YANG, Xiaoling JI, Xiaoqing LI. Propagation characteristics of partially coherentdecentred annular beams propagating through oceanic turbulence. Acta Physica Sinica, 64, 204206(2015).
[24] Tianxing YANG, Shengmei ZHAO. Random Phase Screen Model of Ocean Turbulence. Acta Optica Sinica, 37, 1201001(2017).
[25] Chaojun NIU, Fang LU, Xiange HAN. Propagation properties of gaussian array beams transmitted in oceanic turbulence simulated by phase screen method. Acta Optica Sinica, 38, 0601004(2018).
[26] L ALLEN, M BEIJERSBERGEN, R SPREEUW et al. Orbital angular momentum of light and the transformation of Laguerre-Gaussian laser modes. Physical Review A, 45, 8185(1992).
[27] H HE, M FRIESE, N HECKENBERG et al. Direct observation of transfer of angular momentum to absorptive particles from a laser beam with a phase singularity. Physical Review Letters, 75, 826-829(1995).
[28] G TERRIZA, J TORRES, L TORNER. Management of the angular momentum of light: preparation of photons in multidimensional vector states of angular momentum. Physical Review Letters, 88, 013601(2002).
[29] X LI, Y TAI, Z NIE et al. Digital speckle correlation method based on phase vortices. Optical Engineering, 51, 077004(2012).
[30] F SEVERIN, J ALEXANDER, B STEFAN et al. Spiral phase contrast imaging in microscopy. Optics Express, 13, 689-694(2005).
[31] M ZHAO, X LIANG, J LI et al. Optical phase contrast microscopy with incoherent vortex phase. Laser Photonics Reviews, 16, 2200230(2022).
[32] E OTTE, C DENZ. Optical trapping gets structure: structured light for advanced optical manipulation. Applied Physics Reviews, 7, 041308(2020).
[33] Z WAN, Y SHEN, Z WANG et al. Divergence-degenerate spatial multiplexing towards future ultrahigh capacity, low error-rate optical communications. Light: Science & Applications, 11, 144-155(2022).
[34] X OUYANG, Y XU, M XIAN et al. Synthetic helical dichroism for six-dimensional optical orbital angular momentum multiplexing. Nature Photonics, 15, 901-907(2021).
[35] W ZHANG, Q QI, J ZHOU et al. Mimicking Faraday rotation to sort the orbital angular momentum of light. Physical Review Letters, 112, 153601(2014).
[36] Hongxian ZHANG, Hang ZHAO. Orbital angular momentum of high-order elliptical Hermite-Gaussian beams. Acta Photonica Sinica, 37, 1679-1683(2008).
[37] C SHI, C TAN, T WANG et al. A waste classification method based on a multilayer hybrid convolution neural network. Applied Sciences, 11, 8572-8572(2021).
[38] J M TOPPLE, J A FAWCETT. MiNet: efficient deep learning automatic target recognition for small autonomous vehicles. IEEE Geoscience and Remote Sensing Letters, 18, 1014-1018(2020).
[39] Y DONG, B PAN. A review of speckle pattern fabrication and assessment for digital image correlation. Experimental Mechanics, 57, 1161-1181(2017).
[40] A ZAID, B PENG, R N A ALGBURI et al. A hybrid deep learning pavement crack semantic segmentation. Engineering Applications of Artificial Intelligence, 122, 106142(2023).
[41] Z WANG, X LAI, H HUANG et al. Recognizing the orbital angular momentum (OAM) of vortex beams from speckle patterns. Science China Physics, 65, 244211(2022).
[42] Zhiyi SONG, Zhaoxiang JIN, Yuyan WANG et al. OAM pattern recognition of high order composite LG beams based on convolutional neural networks. Optical Communication Technology, 47, 58-61(2020).
[43] J LI, M ZHANG, D WANG. Adaptive demodulator using machine learning for orbital angular momentum shift keying. IEEE Photonics Technology Letters, 29, 1455-1458(2017).
[44] B CHEN, X JU, B XIAO et al. Locally GAN-generated face detection based on an improved Xception. Information Sciences, 572, 16-28(2021).
[45] Jiapeng PU, Xuemei WANG, Hongwei GAO. Research of aerial image object detection method based on improved YOLOv4. Journal of Shenyang Ligong University, 42, 46-53(2023).
[46] R ANDRE, L G BRUCE, L S MATTHEW. Categorization of birth weight phenotypes for inclusion in genetic evaluations using a deep neural network. Journal of Animal Science, 99, 1-10(2021).
[47] Y CHEN, X LIU, J JIANG et al. Reconstruction of degraded image transmitting through ocean turbulence via deep learning. Journal of the Optical Society of America A, 40, 2215-2222(2023).
[48] Y CHEN, X LIU, J JIANG et al. Estimation of ocean turbulence intensity using convolutional neural networks. Frontiers in Physics, 11, 1279476(2023).
[49] Jie LV, Wenyue ZHU, Jun CAI et al. Comparison of two approaches for estimating atmospheric optical turbulence intensity near sea. Acta Optica Sinica, 37, 0501001(2017).