World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
58
Citations
14288
World Ranking
2457
National Ranking
499

Overview

Pu Zhou is affiliated with the National University of Defense Technology in China. Their research intersects the fields of Engineering and Physics and Astronomy, with substantial contributions specifically in Electrical and Electronic Engineering and Atomic and Molecular Physics, and Optics.

The primary research topics covered by Pu Zhou include photonic crystal and fiber optics, advanced fiber laser technologies, optical network technologies, advanced fiber optic sensors, orbital angular momentum in optics, laser-matter interactions and applications, and optical coherence tomography applications.

Frequent publication venues for Pu Zhou's work are:

  • Optics Express
  • Optics Letters
  • Optics & Laser Technology
  • High Power Laser Science and Engineering
  • Journal of Lightwave Technology

Pu Zhou has collaborated extensively with several co-authors, most notably:

  • Jinyong Leng (83 joint publications)
  • Pengfei Ma (81 joint publications)
  • Rongtao Su (56 joint publications)
  • Liangjin Huang (48 joint publications)
  • Tianfu Yao (47 joint publications)

Selected recent publications by Pu Zhou include:

  • First experimental demonstration of coherent beam combining of more than 100 beams, 2020, Photonics Research
  • Fiber laser development enabled by machine learning: review and prospect, 2022, PhotoniX
  • Influences of the ongoing digital transformation of the Chinese Economy on innovation of sustainable green technologies, 2023, The Science of The Total Environment
  • 7.1 kW coherent beam combining system based on a seven-channel fiber amplifier array, 2021, Optics & Laser Technology
  • 550 W single frequency fiber amplifiers emitting at 1030 nm based on a tapered Yb-doped fiber, 2020, Optics Express

Best Publications

  • Coherent Beam Combining of Fiber Amplifiers Using Stochastic Parallel Gradient Descent Algorithm and Its Application

    Pu Zhou;Zejin Liu;Xiaolin Wang;Yanxing Ma

  • Learning to decompose the modes in few-mode fibers with deep convolutional neural network

    Yi An;Liangjin Huang;Jun Li;Jinyong Leng

  • Coherent beam combination of 1.08 kW fiber amplifier array using single frequency dithering technique.

    Yanxing Ma;Xiaolin Wang;Jinyong Leng;Hu Xiao

  • Mitigating of modal instabilities in linearly-polarized fiber amplifiers by shifting pump wavelength

    Rumao Tao;Pengfei Ma;Xiaolin Wang;Pu Zhou

  • Power scaling analysis of tandem-pumped Yb-doped fiber lasers and amplifiers.

    Jiajian Zhu;Pu Zhou;Yanxing Ma;Xiaojun Xu

  • First experimental demonstration of coherent beam combining of more than 100 beams

    Hongxiang Chang;Qi Chang;Jiachao Xi;Tianyue Hou

  • 1.3 kW monolithic linearly polarized single-mode master oscillator power amplifier and strategies for mitigating mode instabilities

    Rumao Tao;Pengfei Ma;Xiaolin Wang;Pu Zhou

  • Exploration in Performance Scaling and New Application Avenues of Superfluorescent Fiber Source

    Jiangming Xu;Pu Zhou;Wei Liu;Jinyong Leng

  • 1.89 kW all-fiberized and polarization-maintained amplifiers with narrow linewidth and near-diffraction-limited beam quality.

    Pengfei Ma;Rumao Tao;Rongtao Su;Xiaolin Wang

  • Comprehensive Theoretical Study of Mode Instability in High-Power Fiber Lasers by Employing a Universal Model and Its Implications

    Rumao Tao;Xiaolin Wang;Pu Zhou

  • General analysis of SRS-limited high-power fiber lasers and design strategy.

    Wei Liu;Pengfei Ma;Haibin Lv;Jiangmin Xu

  • Real-time mode decomposition for few-mode fiber based on numerical method

    Liangjin Huang;Shaofeng Guo;Jinyong Leng;Haibin Lü

  • High-power fiber lasers based on tandem pumping

    Pu Zhou;Hu Xiao;Jinyong Leng;Jiangmin Xu

  • Efficient Raman fiber laser based on random Rayleigh distributed feedback with record high power

    H Zhang;P Zhou;H Xiao;X Xu

  • Short cavity-length random fiber laser with record power and ultrahigh efficiency

    Xueyuan Du;Hanwei Zhang;Xiaolin Wang;Pu Zhou

  • High-power coherent beam polarization combination of fiber lasers: progress and prospect [Invited]

    Zejin Liu;Pengfei Ma;Rongtao Su;Rumao Tao

  • Review on recent progress on mid-infrared fiber lasers

    P. Zhou;X. Wang;Y. Ma;H. Lü

  • Coherent beam combination of three two-tone fiber amplifiers using stochastic parallel gradient descent algorithm.

    Pu Zhou;Yanxing Ma;Xiaolin Wang;Haotong Ma

  • Suppressing mode instabilities by optimizing the fiber coiling methods

    Rumao Tao;Rongtao Su;Pengfei Ma;Xiaolin Wang

  • Coherent beam combination with single frequency dithering technique

    Yanxing Ma;Pu Zhou;Xiaolin Wang;Haotong Ma

  • Tunable, multiwavelength Tm-doped fiber laser based on polarization rotation and four-wave-mixing effect

    Xiong Wang;Yadong Zhu;Pu Zhou;Xiaolin Wang

  • High-power random distributed feedback fiber laser: From science to application

    Xueyuan Du;Xueyuan Du;Hanwei Zhang;Hu Xiao;Pengfei Ma

  • 1.5-kW Yb-Raman Combined Nonlinear Fiber Amplifier at 1120 nm

    Hanwei Zhang;Rumao Tao;Pu Zhou;Xiaolin Wang

  • Tunable multiwavelength mode-locked Tm/Ho-doped fiber laser based on a nonlinear amplified loop mirror.

    Xiaoxi Jin;Xiong Wang;Xiaolin Wang;Pu Zhou

  • Quasi-kilowatt random fiber laser

    Hanwei Zhang;Long Huang;Jiaxin Song;Han Wu

  • Dynamic mode-switchable optical vortex beams using acousto-optic mode converter.

    Jiafeng Lu;Linghao Meng;Fan Shi;Xiaomin Liu

  • Deep-learning-based phase control method for tiled aperture coherent beam combining systems

    Tianyue Hou;Yi An;Qi Chang;Pengfei Ma

  • Comprehensive investigation on producing high-power orbital angular momentum beams by coherent combining technology

    Dong Zhi;Tianyue Hou;Pengfei Ma;Yanxing Ma

  • 1.7-μm dissipative soliton Tm-doped fiber laser

    Ji-Xiang Chen;Xiang-Yue Li;Ti-Jian Li;Ze-Yu Zhan

  • Deep Learning-Based Real-Time Mode Decomposition for Multimode Fibers

    Yi An;Liangjin Huang;Jun Li;Jinyong Leng

  • Oxidation-Resistant Black Phosphorus Enable Highly Ambient-Stable Ultrafast Pulse Generation at a 2 μm Tm/Ho-Doped Fiber Laser

    Tao Wang;Xiaoxi Jin;Jie Yang;Jian Wu

  • Optical rogue wave in random fiber laser

    Jiangming Xu;Jian Wu;Jun Ye;Jiaxin Song

  • Ultra-stable pulse generation in ytterbium-doped fiber laser based on black phosphorus

    Tao Wang;Xiaoxi Jin;Jie Yang;Jian Wu;Jian Wu

  • Passively spatiotemporal gain-modulation-induced stable pulsing operation of a random fiber laser

    Jiangming Xu;Jun Ye;Wei Liu;Jian Wu

  • Theoretical Analysis of Heat Distribution in Raman Fiber Lasers and Amplifiers Employing Pure Passive Fiber

    Yizhu Chen;Tianfu Yao;Hu Xiao;Jinyong Leng

  • Adaptive mode control of a few-mode fiber by real-time mode decomposition.

    Liangjin Huang;Jinyong Leng;Pu Zhou;Shaofeng Guo

  • 350-W Coherent Beam Combining of Fiber Amplifiers With Tilt-Tip and Phase-Locking Control

    Xiong Wang;Xiaolin Wang;Pu Zhou;Rongtao Su

Frequent Co-Authors

Wei Liu
Wei Liu Sun Yat-sen University
Yi-Jun Xu
Yi-Jun Xu Fuzhou University
Fufei Pang
Fufei Pang Shanghai University
Zhi-Chao Luo
Zhi-Chao Luo South China Normal University
Zhenghui Pan
Zhenghui Pan Tongji University
Tingyun Wang
Tingyun Wang Shanghai University
Tingchao He
Tingchao He Shenzhen University
Zhongmin Yang
Zhongmin Yang South China University of Technology
Peiguang Yan
Peiguang Yan Shenzhen University

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