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Dive into the research topics where Huiqin Tang is active.

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Featured researches published by Huiqin Tang.


Optics Communications | 2002

Flattened multi-Gaussian light beams with an axial shadow generated through superposing Gaussian beams

Kaicheng Zhu; Huiqin Tang; Xingming Sun; Xuewen Wang; Tienan Liu

Abstract Making use of combining 2( N − L +1) off-axial Gaussian beams, the beams with nearly flattened top profiles and an on-axial shadow are introduced. An analytical expression of the beams propagating through a first-order ABCD system is derived. The closed form of the beam propagation factor ( M 2 -factor) is presented to characterize the quality of the beams. Additionally, it is showed that the beam is yet a special solution of the paraxial wave equation and the scheme to generate such a light beam is also proposed.


Journal of The Optical Society of America A-optics Image Science and Vision | 2012

Study on the propagation parameters of Bessel–Gaussian beams carrying optical vortices through atmospheric turbulence

Kaicheng Zhu; Shaoxin Li; Ying Tang; Yan Yu; Huiqin Tang

Based on the integral representation of Bessel function and the extended Huygens-Fresnel principle, an integral expression of the Wigner distribution function (WDF) for partially coherent Bessel-Gaussian beams (PBGBs) propagating through turbulent atmosphere has been obtained. Also, the analytical formulas of the M2-factor for PBGB propagation in such a medium have been derived, which can be applied to cases of different spatial power spectra of the refractive index fluctuations. The performed numerical results reveal that the M2-factor of a PBGB in turbulent atmosphere depends on the beam parameters of the initial input beam, the structure constants of the turbulent atmosphere, and the propagation distance. These results may be useful in long-distance optical communications in free space or in turbulent atmosphere.


Optik | 2002

Flattened light beams with an axial shadow generated through superposing cosh-Gaussian beams

Kaicheng Zhu; Huiqin Tang; Xuewen Wang; Tienan Liu

Summary Making use of combining N — L + 1 cosh-Gaussian beams, the beams with nearly flattened top profiles and an on-axial shadow are introduced. An analytical expression of the beams propagating through a first-order ABCD system is derived. The closed expression of the beam propagation factor (M2-factor) is presented to characterize the quality of the beams, and the kurtosis parameter is employed to describe the sharpness of such beams. Additionally, the scheme to generate such a light beam is also proposed.


Journal of The Optical Society of America B-optical Physics | 2012

Non-Gaussian state with vortex structure of quantized radiation field

Kaicheng Zhu; Shaoxin Li; Xiaojuan Zheng; Huiqin Tang

A new kind of quantum non-Gaussian state with vortex structure termed as a modified Bessel–Gaussian vortex state is constructed, and it is an eigenstate of sum of squared annihilation operator a2+b2. The quantum vortex state exhibits a rich variety of nonclassical signatures and is always entangled. The dependence of its statistical properties on state parameters is analyzed, and the non-Gaussianity is investigated in detail. It is found that, for sufficient small values of α, the properties clearly depend on the topological charge index n. Moreover, a scheme for generating such quantized vortex states is proposed.


Optics Express | 2017

Propagation of multi-cosine-Laguerre-Gaussian correlated Schell-model beams in free space and atmospheric turbulence

Jie Zhu; Xiaoli Li; Huiqin Tang; Kaicheng Zhu

We introduce a class of random stationary, scalar source named as multi-cosine-Laguerre-Gaussian-correlated Schell-model (McLGCSM) source whose spectral degree of coherence (SDOC) is a combination of the Laguerre-Gaussian correlated Schell-model (LGCSM) and multi-cosine-Gaussian correlated Schell-model (McGCSM) sources. The analytical expressions for the spectral density function and the propagation factor of a McLGCSM beam propagating in turbulent atmosphere are derived. The statistical properties, such as the spectral intensity and the propagation factor, of a McLGCSM beam are illustrated numerically. It is shown that a McLGCSM beam exhibits a robust ring-shaped beam array with adjustable number and positions in the far field by directly modulating the spatial structure of its SDOC in the source plane. Moreover, we provide a detailed insight into the theoretical origin and characteristics of such a ring-shaped beam array. It is demonstrated that these peculiar shaping properties are the concentrated manifestation of the individual merits respectively associated with the Laguerre- and multi-cosine-related factors of the whole SDOC. Our results provide a novel scheme to generate robust and controllable ring-shaped beam arrays over large distances, and will widen the potentials for manipulation of multiple particles, free-space optical communications and imaging in the atmosphere.


Optics Communications | 2003

Paraxial propagation of Gaussian beam through curved transverse parabolic graded-index waveguides

Kaicheng Zhu; Xingmin Sun; Xuewen Wang; Huiqin Tang; Yongyi Peng

Based on the unitary transformation and the Lie algebra decomposition technology widely used in quantum mechanics, we obtain the analytical propagation kernel of a light field through curved transverse parabolic graded-index (GRIN) waveguides. The results show that, unlike in a straight parabolic graded-index waveguide, the curve of a transverse parabolic GRIN waveguide can result in two new effects during a Gaussian beam propagation: one is a phase shift including a global one and a local one, which result in the direction change of the light beam propagating through such a curved transverse parabolic GRIN waveguide. The other is to transform an on-axis Gaussian beam into a off-axis Gaussian one. In addition, the deviation of the Gaussian beam distribution center from the center of the curved transverse parabolic GRIN waveguide is also calculated.


Quantum Information Processing | 2013

Vortex and entanglement occurring in propagating states through coupled lossy waveguides

Kaicheng Zhu; Shaoxin Li; Huiqin Tang; Ying Tang; Xiaojuan Zheng

A separable input state consisting of an


Journal of Modern Optics | 2008

Focal switch and dual focal switch of a Hermite–Gaussian beam illuminating a lens and sinusoidal amplitude grating separated system

Kaicheng Zhu; Xueyan Li; Taofen Wang; Huiqin Tang


Journal of The Optical Society of America A-optics Image Science and Vision | 2009

Virtual sources for coherent combination beams consisting of off-axis Gaussian beams.

Kaicheng Zhu; Xueyan Li; Taofen Wang; Huiqin Tang

n


Journal of Modern Optics | 2017

Average intensity and spreading of an astigmatic sinh-Gaussian beam with small beam width propagating in atmospheric turbulence

Jie Zhu; Kaicheng Zhu; Huiqin Tang; Hui Xia

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Kaicheng Zhu

Central South University

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Shaoxin Li

Guangdong Medical College

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Xiaojuan Zheng

Central South University

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Ying Tang

Central South University

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Taofen Wang

Hunan University of Science and Technology

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Hui Xia

Central South University

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Tienan Liu

Central South University

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Yan Yu

Central South University

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Yongyi Gao

Hunan University of Science and Technology

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Xuguang Li

Central South University

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