Yuan, YangshengChen, YahongLiang, ChunhaoCai, YangjianBaykal, Yahya2017-02-232017-02-232013Yuan, Y...et al. (2013). Effect of spatial coherence on the scintillation properties of a dark hollow beam in turbulent atmosphere. Applied Physisc B-Lasers And Optics, 110(4), 519-529. http://dx.doi.org/10.1007/s00340-012-5288-y0946-2171http://hdl.handle.net/20.500.12416/1301With the help of a tensor method, we derive an explicit expression for the on-axis scintillation index of a circular partially coherent dark hollow (DH) beam in weakly turbulent atmosphere. The derived formula can be applied to study the scintillation properties of a partially coherent Gaussian beam and a partially coherent flat-topped (FT) beam. The effect of spatial coherence on the scintillation properties of DH beam, FT beam and Gaussian beam is studied numerically and comparatively. Our results show that the advantage of a DH beam over a FT beam and a Gaussian beam for reducing turbulence-induced scintillation increases particularly at long propagation distances with the decrease of spatial coherence or the increase of the atmospheric turbulence, which will be useful for long-distance free-space optical communicationseninfo:eu-repo/semantics/closedAccessElliptic Gaussian-BeamParaxial PropagationAverage IntensityOptical SystemGenerationModelIndexPolarizationM-2 FactorApertureEffect of spatial coherence on the scintillation properties of a dark hollow beam in turbulent atmosphereEffect of Spatial Coherence on the Scintillation Properties of a Dark Hollow Beam in Turbulent AtmosphereArticle110451952910.1007/s00340-012-5288-y