Spectral shift of partially coherent flattened multi-Gaussian beams with a hole passing through ABCD optical systems |
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Authors: | Yan Zhang Bin Zhang |
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Affiliation: | a College of Electronic Information, Sichuan University, Chengdu 610064, China b School of Optoelectronic Information, University of Electronic Science and Technology of China, Chengdu 610054, China |
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Abstract: | Based on flattened multi-Gaussian beam model and partially coherent theory, the expression for cross-spectral density of partially coherent flattened multi-Gaussian beam with a hole was given. The analytical expression for on-axis spectrum of partially coherent flattened multi-Gaussian beam with a hole passing through a paraxial ABCD optical system was derived. The spectral shifts of the partially coherent flattened multi-Gaussian beam with a hole propagating in free space and passing through the lens have been analyzed. The effects of the beam profile, spatial coherence parameter and the system parameters on the relative spectral shift have been discussed. Our results show that the inner radius of flattened multi-Gaussian beam with a hole determines its relative spectral shift in near field and its outer radius determines that in far field. For the flattened multi-Gaussian beam with a hole passing through a lens, the on-axis relative spectral shift changes sharply near the focal plane with the increase in Fresnel number and the spatial coherence parameter. |
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Keywords: | Spectral shift Partially coherent flattened multi-Gaussian beam ABCD optical system |
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