Li Ye, Yu Lin, Zhang Yixin
Opt Express. 2017 May 29;25(11):12203-12215. doi: 10.1364/OE.25.012203.
Applying the angular spectrum theory, we derive the expression of a new Hermite-Gaussian (HG) vortex beam. Based on the new Hermite-Gaussian (HG) vortex beam, we establish the model of the received probability density of orbital angular momentum (OAM) modes of this beam propagating through a turbulent ocean of anisotropy. By numerical simulation, we investigate the influence of oceanic turbulence and beam parameters on the received probability density of signal OAM modes and crosstalk OAM modes of the HG vortex beam. The results show that the influence of oceanic turbulence of anisotropy on the received probability of signal OAM modes is smaller than isotropic oceanic turbulence under the same condition, and the effect of salinity fluctuation on the received probability of the signal OAM modes is larger than the effect of temperature fluctuation. In the strong dissipation of kinetic energy per unit mass of fluid and the weak dissipation rate of temperature variance, we can decrease the effects of turbulence on the received probability of signal OAM modes by selecting a long wavelength and a larger transverse size of the HG vortex beam in the source's plane. In long distance propagation, the HG vortex beam is superior to the Laguerre-Gaussian beam for resisting the destruction of oceanic turbulence.
应用角谱理论,我们推导了一种新型厄米 - 高斯(HG)涡旋光束的表达式。基于这种新型厄米 - 高斯(HG)涡旋光束,我们建立了该光束在各向异性湍流海洋中传播时轨道角动量(OAM)模式接收概率密度的模型。通过数值模拟,我们研究了海洋湍流和光束参数对HG涡旋光束信号OAM模式和串扰OAM模式接收概率密度的影响。结果表明,在相同条件下,各向异性海洋湍流对信号OAM模式接收概率的影响小于各向同性海洋湍流,盐度波动对信号OAM模式接收概率的影响大于温度波动的影响。在流体单位质量动能强耗散和温度方差弱耗散率的情况下,我们可以通过在源平面中选择长波长和更大横向尺寸的HG涡旋光束来降低湍流对信号OAM模式接收概率的影响。在长距离传播中,HG涡旋光束在抵抗海洋湍流破坏方面优于拉盖尔 - 高斯光束。