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Chunqing Gao

Beijing Institute of Technology · CN
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Area of research
Atomic and Molecular Physics, and Optics · Electrical and Electronic Engineering
Research interest
Research topics from publications: Universal orbital angular momentum spectrum analyzer for beams; Demonstration of free-space one-to-many multicasting link from orbital angular momentum encoding; Photon total angular momentum manipulation; Orbital angular momentum comb generation from azimuthal binary phases; Remote detection of a rotator based on rotational Doppler effect; Tailoring a complex perfect optical vortex array with multiple selective degrees of freedom; Multiplexed vortex state array toward high-dimensional data multicasting; Distortion Compensation for Orbital Angular Momentum Beams: From Probing to Deep Learning; Advances on Solid-State Vortex Laser; Intra‐Cavity Laser Manipulation of High‐Dimensional Non‐Separable States. Representative work: Abstract The orbital angular momentum (OAM) of beams provides a new dimension, and have already found lots of applications in various domains. Among such applications, the precisely and quantitatively diagnostic of intensity distributions among different OAM modes, namely the OAM spectrum of a beam, is of great significance. In this paper we propose and experimentally validate a simple interferential method to achieve this goal. By analyzing the interference pattern formed by the beam and a reference field, the OAM spectrum can be obtained instantaneously. Furthermore, the proposed method is also available for more complex light fields, for instance, the multi-ring optical vortices. In the p Multicasting is necessary when distributing signals between multiple users. In this Letter, we demonstrate an orbital angular momentum (OAM) encoding-based free-space one-to-many multicasting link, where digital signals are encoded into a series of time-varying OAM states and transmitted from one transmitter to multiple receivers with various locations. Moreover, encoding N various signals simultaneously in one transmitter and sending them at the same time to N various receivers separately, is also demonstrated. As a proof-of-concept, four different gray images are coded by one transmitter simultaneously and multicast to four various receivers separately. The favorable decoding results retur
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Recent publications

Evaluation of occlusion immunities of free-space orbital angular momentum shift keying
Optics Express 2025cited by 7position: middledoi
Single-frequency switchable-dual-OAM laser in eye-safe band toward rotational Doppler metrology
Optics Express 2025cited by 6position: middledoi
Single-frequency orbital angular momentum switchable modes from a microchip laser
Optics Letters 2024cited by 10position: middledoi
Deep learning-based prediction of atmospheric turbulence toward satellite-to-ground laser communication
Optics Letters 2024cited by 10position: middledoi
Photon total angular momentum manipulation
Advanced Photonics 2023cited by 54position: middledoi
Intra‐Cavity Laser Manipulation of High‐Dimensional Non‐Separable States
Laser & Photonics Review 2023cited by 22position: middledoi
Deep-learning assisted fast orbital angular momentum complex spectrum analysis
Optics Letters 2023cited by 20position: middledoi
Orbital angular momentum comb generation from azimuthal binary phases
Advanced Photonics Nexus 2022cited by 52position: lastdoi
Multiplexed vortex state array toward high-dimensional data multicasting
Optics Express 2022cited by 37position: lastdoi
Distortion Compensation for Orbital Angular Momentum Beams: From Probing to Deep Learning
Journal of Lightwave Technology 2022cited by 27position: middledoi
Advances on Solid-State Vortex Laser
Photonics 2022cited by 25position: lastdoi
Tailoring a complex perfect optical vortex array with multiple selective degrees of freedom
Optics Express 2021cited by 44position: lastdoi
Thermal effects of the zig-zag Yb:YAG slab laser with composite crystals
Applied Physics B 2021cited by 11position: lastdoi
Universal orbital angular momentum spectrum analyzer for beams
PhotoniX 2020cited by 119position: lastdoi
Remote detection of a rotator based on rotational Doppler effect
Applied Physics Express 2020cited by 46position: lastdoi
Demonstration of free-space one-to-many multicasting link from orbital angular momentum encoding
Optics Letters 2019cited by 57position: lastdoi
The radial Doppler effect of optical vortex beams induced by a surface with radially moving periodic structure
Journal of Optics 2019cited by 19position: lastdoi

Grants

No grants ingested yet.

Frequent collaborators

Shiyao Fu · Ningbo University17 papers (2019–2025)Lang Li · South China Agricultural University7 papers (2022–2024)Lan Hai · Ministry of Education of the People's Republic of China6 papers (2022–2024)Yanwang Zhai · Beijing Institute of Technology4 papers (2019–2020)Jianqiang Zhang · UNSW Sydney4 papers (2019–2020)Heng Zhou · Beijing Institute of Technology4 papers (2019–2020)Ci Yin · Beijing Institute of Technology3 papers (2019–2024)Zijun Shang · Ministry of Education of the People's Republic of China3 papers (2022–2023)Zhichao Zhang · Ministry of Education of the People's Republic of China3 papers (2022–2023)Yingchi Guo · Ministry of Education of the People's Republic of China2 papers (2022–2023)Zhejing Zhang · Ministry of Education of the People's Republic of China2 papers (2023–2025)Yanlai Lv · Ministry of Education of the People's Republic of China2 papers (2020–2022)Qing Wang · Guangzhou University of Chinese Medicine2 papers (2023–2024)Jiaqi Wang · Nantong University2 papers (2022–2023)Mingwei Gao · Ministry of Education of the People's Republic of China2 papers (2021–2025)Haoran Yu · Ministry of Education of the People's Republic of China1 papers (2024–2024)Lang Li · Ministry of Education of the People's Republic of China1 papers (2025–2025)Yijie Shen · Shanghai Medical College of Fudan University1 papers (2023–2023)Shi-Long Liu · Tianjin University of Traditional Chinese Medicine1 papers (2023–2023) · 1 papers (2023–2023)
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