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Numerical simulation of super-continuum laser propagation in turbulent atmosphere
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作者 李雅倩 朱文越 钱仙妹 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第3期253-259,共7页
Considering the atmospheric extinction and turbulence effects,we investigate the propagation performances of supercontinuum laser sources in atmospheric turbulence statistically by using the numerical simulation metho... Considering the atmospheric extinction and turbulence effects,we investigate the propagation performances of supercontinuum laser sources in atmospheric turbulence statistically by using the numerical simulation method,and the differences in propagation properties between the super-continuum(SC)laser and its pump laser are also analyzed.It is found that the propagation characteristics of super-continuum laser are almost similar to those of the pump laser.The degradation of source coherence degree may cause the relative beam spreading and scintillation indexes to decrease at different propagation distances or different turbulence strengths.The root-mean-square value of beam wandering is insensitive to the variation of source correlation length,and less aperture averaging occurs when the laser source becomes less coherent.Additionally,from the point of view of beam wandering,the SC laser has no advantage over the pump laser.Although the pump laser can bring about a bigger aperture average,the SC laser has a lower scintillation which may be due to the multiple wavelength homogenization effects on intensity fluctuations.This would be the most important virtue of the SC laser that can be utilized to improve the performance of laser engineering. 展开更多
关键词 super-continuum laser source pump laser source numerical simulation atmospheric propagation properties
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Seasonally Varying Reference Atmospheres for East Asia
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作者 Byung-Ju SOHN Geun-Hyeok RYU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2007年第2期181-190,共10页
Vertical profiles of seasonally varying pressure, temperature, water vapor, and trace gases (O3, N2O, CO, CH4), representing atmospheric conditions up to a height of 100 km over the East Asia region (30°-50... Vertical profiles of seasonally varying pressure, temperature, water vapor, and trace gases (O3, N2O, CO, CH4), representing atmospheric conditions up to a height of 100 km over the East Asia region (30°-50°N, 110°-150°E) were constructed by using various observation data, model outputs of atmospheric thermodynamic parameters, and gaseous concentrations. Optical characteristics of the obtained East Asia reference atmospheres were compared with those from typical midlatitude summer and winter atmospheres. It was noted that, in the water vapor field, there are major differences between the two model atmospheres during the summer. The resultant impact during the summer of water vapor difference on incoming solar fluxes at the surface and emitted terrestrial fluxes at the top of the atmosphere are 14.3 W m^-2 and 6.5 W m^-2, respectively. On the other hand, the winter difference between East Asian and midlatitude atmospheres appears to be insignificant. Reference atmospheres for the spring and fall are also available. Utilizing the constructed atmospheric profiles as inputs to the radiative transfer model, it is expected that the constructed seasonally varying reference atmospheres can facilitate better descriptions of optical properties in East Asia. 展开更多
关键词 East Asian reference atmosphere radiative transfer atmospheric optical property
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