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Propagation of an Airy–Gaussian beam in uniaxial crystals 被引量:6

Propagation of an Airy–Gaussian beam in uniaxial crystals
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摘要 Under the paraxial approximation, the analytical propagation expression of an Airy–Gaussian beam(Ai GB) in uniaxial crystals orthogonal to the optical axis is investigated. The propagation dynamics of the Ai GB is given for different ratios of the extraordinary index to the ordinary refractive index. It has been found that the continuity and the self-bending effect of Ai GB become weaker when the ratio increases. From the figure of the maximum intensity of Ai GB, one can see that the maximum intensity is not monotone decreasing due to the anisotropic effect of the crystals. The intensity distribution of Ai GB in different distribution factors is shown. The Ai GB converges toward a Gaussian beam as the distribution factor increases. Under the paraxial approximation, the analytical propagation expression of an Airy–Gaussian beam(Ai GB) in uniaxial crystals orthogonal to the optical axis is investigated. The propagation dynamics of the Ai GB is given for different ratios of the extraordinary index to the ordinary refractive index. It has been found that the continuity and the self-bending effect of Ai GB become weaker when the ratio increases. From the figure of the maximum intensity of Ai GB, one can see that the maximum intensity is not monotone decreasing due to the anisotropic effect of the crystals. The intensity distribution of Ai GB in different distribution factors is shown. The Ai GB converges toward a Gaussian beam as the distribution factor increases.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第12期309-312,共4页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.11374108 and 10904041) the Foundation for the Author of Guangdong Provincial Excellent Doctoral Dissertation China(Grant No.SYBZZXM201227) the Foundation of Cultivating Outstanding Young Scholars("Thousand Hundred Ten"Program)of Guangdong Province in China the Fund from the Key Laboratory of Geospace Environment University of Science and Technology of China Chinese Academy of Sciences
关键词 Airy–Gaussian beam extraordinary and ordinary refractive index anisotropic effect Airy–Gaussian beam,extraordinary and ordinary refractive index,anisotropic effect
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