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Numerical Simulation for Coherent and Partially Coherent Beam Propagation through Atmospheric Turbulence 被引量:2

Numerical Simulation for Coherent and Partially Coherent Beam Propagation through Atmospheric Turbulence
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摘要 Propagation properties of coherent and partially coherent beams in atmospheric turbulence are investigated respectively by using numerical simulation It is found that a partially coherent beam has a spreading larger than a coherent beam. However, from the point view of relative beam spreading and intensity scintillation, a partially coherent beam is less affected than the corresponding coherent beam, which may be the most important virtue of partially coherent beams that could be utilized to improve the performance of laser engineering. The beam wandering is almost independent of the degree of the source coherence. More aperture averaging occurs when beam becomes more coherent. Propagation properties of coherent and partially coherent beams in atmospheric turbulence are investigated respectively by using numerical simulation It is found that a partially coherent beam has a spreading larger than a coherent beam. However, from the point view of relative beam spreading and intensity scintillation, a partially coherent beam is less affected than the corresponding coherent beam, which may be the most important virtue of partially coherent beams that could be utilized to improve the performance of laser engineering. The beam wandering is almost independent of the degree of the source coherence. More aperture averaging occurs when beam becomes more coherent.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2010年第4期159-162,共4页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant No 0704071, and the Fund of Anhui Key Laboratory of Optoelectronic Science and Technology.
关键词 OPTICS quantum optics and lasers Environmental and Earth science Optics, quantum optics and lasers Environmental and Earth science
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