发表论文

2023

1. Churong Pan, Huangjie Li, Hao Pang, Ruibo Ru, Sannv Zhang, Dong Wei,* Haixia Chen,* Hong Gao, and Fuli Li, "Generation and Manipulation of Spin-Orbit Coupling mode via Four-Wave Mixing with Quantum Interference", Laser Photonics Rev. 2023, 2300625

2. Jun Liu,* Tao Shao,  Yuanxiang Wang, Mingming Zhang, Youyou Hu, Dongxu Chen, and Dong Wei, "Enhancement of the phase sensitivity with two-mode squeezed coherent state based on a Mach-Zehnder interferometer", Opt. Express. 31, 27735(2023)

2022

1. Yingxin Zhang; Ruibo Ru; Sannv Zhang; Churong Pan; Yan Qin; Haixia Chen; Dong Wei, “Enhancing sensitivity of the angular displacement measurement based on a hybrid interferometer combining parametric amplification”, Optics Communications, 508, 127745(2022)

2021

1. Churong Pan, Chengdong Yang, Huajie Hu, Jinwen Wang, Yingxin Zhang, Yan Qin, Dong Wei*, Haixia Chen*, Hong Gao, and Fuli Li, “Trans-spectral vector beam nonlinear conversion via parametric four-wave mixing in alkali vapor”, Opt. Lett. 46, 5579 (2021)

2. Yan Qin, Haixia Chen, Dajin Luo, Churong Pan, Huajie Hu, Yingxin Zhang, and Dong Wei*, “Quantum Interference in Anti-Parity-Time Symmetric Coupled Waveguide System”, Opt. Express. 29, 29175(2021)

3. Huajie Hu, Dajin Luo, Churong Pan, Yan Qin, Yingxin Zhang, Dong Wei*, Haixia Chen*, Hong Gao, and Fuli Li“Collapse of hybrid vector beam in Rb atomic vapor" Opt. Lett. 46, 2614 (2021)

4. Yun Chen, Jinwen Wang, Zhou Peng, Min Wang, Han Wang, Dong Wei,* Hong Gao, and Fuli Li, “Tailoring multi-singularity structure induced by a focused radially polarized beam”, Journal of the Optical Society of America A38419(2021)

2020

1. Jun Liu, Ya Yu, Chengyuan Wang, Yun Chen, Jinwen Wang, Haixia Chen, Dong Wei, Hong Gao and Fuli Li“Optimal phase sensitivity by quantum squeezing based on a Mach–Zehnder interferometer”, New J. Phys. 22013031(2020) 

2. Dajin Luo, Huajie Hu, Churong Pan, Yingxin Zhang, Yan Qin, Haixia Chen, Dong Wei, Hong Gao and Fuli Li, “Nonlinear control of polarization rotation of hybrid-order vector vortex beams",  J. Opt. 22, 115612 (2020)

2019

1. Dajin Luo, Shuyun Hu, Huajie Hu, Dong Wei*, Haixia Chen, Hong Gao, and Fuli Li, “Propagation dynamics of finite-energy Airy beams in nonlocal nonlinear atomic vapor” OSA Continuum Vol. 2, Issue 4, pp. 1365-1377 (2019)

2. Yun-Ke Li, Jin-Wen Wang, Xin Yang, Yun Chen, Xi-Yuan Chen, Ming-Tao Cao, Dong Wei, Hong Gao*, Fu-Li Li, “Controllable transmission of vector beams in dichroic medium” Chin. Phys. B. 28, 014205(2019)

 2018

1. JinWen Wang, Xin Yang, ShuWei Qiu, MingTao Cao, Dong Wei, Hong Gao*, and FuLi Li, “Controllable speckle compression in atomic vapor by frequency modulation and its application in ghost imaging” SCIENCE CHINA Physics, Mechanics & Astronomy Vol. 61, 090321(2018)

2. Chengyuan Wang, Yan Gu, Ya Yu, Dong Wei, Pei Zhang, Hong Gao*, and Fuli Li, “Efficient generation of non-classical photon pairs in a hot atomic ensemble” COL 16, 082701(2018)

3. Jinwen Wang, Xin Yang, Yunke Li, Yun Chen, Mingtao Cao, Dong Wei, Hong Gao,* and Fuli Li, “Optically spatial information selection with hybridly polarized beam in atomic vapor” Photonics Research Vol. 6, 451(2018)

4. Jun Liu, Shitao Li, Dong Wei, Hong Gao, and Fuli Li, “Super-resolution and ultra-sensitivity of angular rotation measurement based on SU(1,1) interferometers using homodyne detection” J. Opt. 20, 025201(2018)

 2017

1.  Jun Liu, Wenxiao Liu, Shitao Li, Dong Wei, Hong Gao, and Fuli Li, “Enhancement of the angular rotation measurement sensitivity based on SU(2) and SU(1,1) interferometers” Photonics Research, Vol. 5, No. 6, 617(2017)

2.  Huajie Hu, Jingnuan Song, Haixia Chen, Dong Wei, Hong Gao and Fuli Li, “Investigating the self-healing property of radially self-accelerating beam” J. Opt. 19 (2017) 065601

3.  Bin Cao, Dong Wei, Pei Zhang, Hong Gao, and Fuli Li, “Observing the spin Hall effect of pseudothermal light through weak measurement” COL 15(2), 022401(2017)

 2016年 

1. Jianbin Liu, Dong Wei*, Hui Chen, Yu Zhou, Huaibin Zheng, Hong Gao, Fu-Li Li, Zhuo Xu,“Second-order interference of two independent and tunable single-mode continuous-wave lasers,”Chin. Phys. B 25, 034203(2016)

 2. Li-Yun Zhang, Hua-Jie Hu, Xin Yang, Ming-Tao Cao, Dong Wei, Pei Zhang, Hong Gao*, Fu-Li Li, The Image Property in an EIT Information Transfer System, Chin. Phys. Lett 33,124203 (2016)

3. Mingtao Cao, Xin Yang, Jinwen Wang, Shuwei Qiu, Dong Wei, Hong Gao,* and Fuli Li, Resolution enhancement of ghost imaging in atom vapor, Opt. Lett. 41,5349 (2016)

4. Jun Liu, Dong Wei*, Jin-wen Wang, Ya Yu, Hua-jie Hu, Hong Gao*, and Fu-li LiObservation of multi-Raman gain resonances in rubidium vaporChin. Phys. B 25, 114204 (2016)

5. Ya Yu, Chengyuan Wang, Jun Liu, Jinwen Wang, Mingtao Cao, Dong Wei, Hong Gao*, and Fuli Li, Ghost imaging with different frequencies through non-degenerated four-wave mixing, Opt. Express 24 18290 (2016)

 2015年 

1. Dong Wei, Jun Liu, Ya Yu, Jinwen Wang, Hong Gao and Fuli Li, “Generation of twin Airy beams with a parametric amplifier” J. Phys. B: At. Mol. Opt. Phys. 48 245401 (2015) 

2. Liyun Zhang, Fengjuan Ye, Mingtao Cao, Dong Wei*,Pei Zhang, Hong Gao, and Fuli Li, “Investigating the self-healing property of an optical Airy beam,” Opt. Lett. 40,5066 (2015) 

3. Fengjuan Ye, Liyun Zhang, Feiran Wang, Yongming Yang, Ya Yu, Jun Liu, Dong Wei*, Pei Zhang, Hong Gao, Fuli Li, “Propagation of Airy beams in a close-Λ electromagnetically induced transparency system,” Opt. Communications, 345, 129-134 (2015)

2014年 

1. Mingtao Cao, Ya Yu, Liyun Zhang, Fengjuan Ye, Yunlong Wang, Dong Wei, Pei Zhang, Wenge Guo, Shougang Zhang, Hong Gao, and Fuli Li, Demonstration of CNOT gate with Laguerre Gaussian beams via four-wave mixing in atom vapor, Opt. Express 22 20177 (2014)

2. Dong Wei, Ya Yu, Mingtao Cao, Liyun Zhang, Fengjuan Ye, Wenge Guo, Shougang Zhang, Hong Gao, and Fuli Li, “Generation of Airy beams by four-wave mixing in Rubidium vapor cell”, Opt. Lett. 39,4557 (2014)

3. Mingtao Cao, Liyun Zhang, Ya Yu, Fengjuan Ye, Dong Wei*, Wenge Guo, Shougang Zhang, Hong Gao*, and Fuli Li, “Transfer and conversion of images based on EIT in atom vapor”, Opt. Lett. 39,2723 (2014)

2013

1. Dong Wei, Hao Liu, Mingtao Cao, Ruifeng Liu, Liang Han, Pei Zhang, You Zhou, Hong-Rong Li, Hong Gao, and Fuli Li, “Polarization separation of light in holographic grating reflection in conical mounting” J. Mod. Opt. 60, 598 (2013).

2. XU Yuan, HUANG Yuan-Yuan, HU Ling, ZHANG Pei, WEI Dong, LI Hong-Rong*, GAO Hong*, LI Fu-Li “Measurement of Berry Phase Associated with Higher Dimensional Orbital Angular Momentum of Light by Interference Method” CHIN. PHYS. LETT. 30, 100304 (2013).

2007-2012

1. Mingtao Cao, Liang Han, Ruifeng Liu, Hao Liu, Dong Wei, Pei Zhang, Yu Zhou, Wenge Guo, Shougang Zhang, Hong Gao, and Fuli Li, “Deutsch’s algorithm with topological charges of optical vortices via non-degenerate four-wave mixing” Opt. Express 20, 24263 (2012).

2. Liang Han, Mingtao Cao, Ruifeng Liu, Hao Liu, Wenge Guo, Dong Wei, Shaoyan Gao, Pei Zhang, Hong Gao, and Fuli Li, “Identifying the orbital angular momentum of light based on atomic ensembles” Euro Phys. Lett. 99, 34003 (2012).

3. J. F. Chen, Shuyuan Wang, Dong Wei, M. M. T. Loy, G. K. L. Wong, Shengwang Du “Optical coherent transients in cold atoms: From free-induction decay to optical precursors ” Phys. Rev. A. 81,033844 (2010)

4. Dong Wei, J. F. Chen, M. M. T. Loy, G. K. L. Wong, Shengwang Du “Optical precursors with Electromagnetically Induced Transparency in Cold Atoms” Phys. Rev. Lett. 103,093602 (2009)

2007年之前

1. WEI Dong, XIONG De-Zhi, CHEN Hai-Xia, WANG Peng-Jun, GUO Lu, ZHANG Jing, “Simultaneous magneto-optical trapping of fermionic 40K and bosonic 87Rb atoms,” Chinese Physics Letters, 24, 1541 (2007)

2. WEI Dong, XIONG De-Zhi, CHEN Hai-Xia, ZHANG Jing “An Enriched 40K Source for Atomic Cooling” Chin. Phys. Lett. 24, 679 (2007)

3. Hongliang Ma, Chenguang Ye, Dong Wei, Jing Zhang,“Coherence Phenomena in the Phase-Sensitive Optical Parametric Amplification inside a Cavity” Phys. Rev. Lett. 95, 2336012005) 

4. Jing Zhang, Dong Wei, Changde Xie, Kunchi Peng,“Characteristics of absorption and dispersion for rubidium D2 lines with the modulation transfer spectrum”Optics express 11, 13382003