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Yangjian Cai

Researcher at Shandong Normal University

Publications -  545
Citations -  13297

Yangjian Cai is an academic researcher from Shandong Normal University. The author has contributed to research in topics: Beam (structure) & Gaussian beam. The author has an hindex of 57, co-authored 436 publications receiving 11064 citations. Previous affiliations of Yangjian Cai include Hong Kong Baptist University & Royal Institute of Technology.

Papers
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Hollow Gaussian beams and their propagation properties.

TL;DR: The HGBs provide a convenient and powerful way to describe and treat the propagation of DHBs and can be used conveniently to analyze atoms manipulated with a DHB.
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Propagation of various dark hollow beams in a turbulent atmosphere

TL;DR: It is found that after a long propagation distance a dark hollow beam of circular or noncircular eventually becomes a circular Gaussian beam (without dark hollow) in a turbulent atmosphere, which is much different from its propagation properties in free space.
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Ghost imaging with incoherent and partially coherent light radiation.

TL;DR: The quality and visibility of the ghost image are influenced by the source's transverse size, coherence width, and object characteristics, and the equation depends on both paths.
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Tensor ABCD law for partially coherent twisted anisotropic Gaussian-Schell model beams.

TL;DR: The analytical formulas presented here are useful in treating the propagation and transformation of partially coherent anisotropic GSM beams, which include previous results for completely coherent Gaussian beams as special cases.
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Propagation of a partially coherent twisted anisotropic Gaussian Schell-model beam in a turbulent atmosphere

TL;DR: In this article, the propagation properties of a partially coherent twisted anisotropic Gaussian Schell model (TAGSM) beam in a turbulent atmosphere were investigated in detail, and it was found that a TAGSM beam will become a circular beam in turbulent atmosphere, and low coherence and larger twist have an effect of anticircularization of the beam spot.