Goos-Hänchen和电磁多高斯谢尔模型光束的Imbert-Fedorov位移。

IF 1.5 3区 物理与天体物理 Q3 OPTICS
Miaomiao Tang, He Zhang, Yunzhe Yang, Shijie Dong, Yujie Zhou, Xinzhong Li
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引用次数: 0

摘要

我们考虑了部分相干、部分偏振光的反射和传输引起的Goos-Hänchen和Imbert-Fedorov位移。针对电磁多高斯谢尔模型源的具体情况,得到了光束空间位移和角度位移的紧凑表达式,并研究了这种光束的相干性和极化对这些位移的影响。研究发现,相关结构和入射光束的相干宽度可以显著增强或抑制这些位移的角部。此外,极化状态和极化程度对GH位移并不重要。即使在完全未极化的情况下,也可以观察到这两种GH效应。然而,中频位移更受源的非极化部分的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Goos-Hänchen and Imbert-Fedorov shifts for electromagnetic multi-Gaussian Schell-model beams.

We consider the Goos-Hänchen and Imbert-Fedorov shifts arising from the reflection and transmission of partially coherent, partially polarized beams. For the specific case of an electromagnetic multi-Gaussian Schell-model source, compact expressions are obtained for the spatial and angular versions of the beam shifts, and the influence of the coherence and polarization of such a beam on these shifts is then investigated. It is found that the angular part of these shifts can be significantly enhanced or suppressed by the correlation structure and coherence width of the incident beam. In addition, the state and degree of polarization are not crucial for GH shifts. Both GH effects can be observed even in the completely unpolarized case. However, the IF shifts are more affected by the presence of the unpolarized part of the source.

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来源期刊
CiteScore
3.40
自引率
10.50%
发文量
417
审稿时长
3 months
期刊介绍: The Journal of the Optical Society of America A (JOSA A) is devoted to developments in any field of classical optics, image science, and vision. JOSA A includes original peer-reviewed papers on such topics as: * Atmospheric optics * Clinical vision * Coherence and Statistical Optics * Color * Diffraction and gratings * Image processing * Machine vision * Physiological optics * Polarization * Scattering * Signal processing * Thin films * Visual optics Also: j opt soc am a.
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