World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
36
Citations
4960
World Ranking
5378
National Ranking
780

Overview

Chengbo Mou is affiliated with Shanghai University in China and has contributed extensively to the fields of engineering and physics and astronomy. Their research predominantly focuses on advanced fiber laser technologies and fiber optic sensors, addressing various aspects of photonic crystal and fiber optics, as well as photonic and optical devices. The scientist also investigates laser-matter interactions, orbital angular momentum in optics, and magneto-optical properties and applications.

The main fields of study covered by Mou include:

  • Engineering
  • Physics and Astronomy

Within these broad fields, their work is concentrated in several subfields, such as:

  • Electrical and Electronic Engineering
  • Atomic and Molecular Physics, and Optics
  • Biomedical Engineering
  • Surfaces, Coatings and Films
  • Spectroscopy

The key topics encompassed in Mou's research are:

  • Advanced Fiber Laser Technologies
  • Advanced Fiber Optic Sensors
  • Photonic Crystal and Fiber Optics
  • Photonic and Optical Devices
  • Laser-Matter Interactions and Applications
  • Orbital Angular Momentum in Optics
  • Magneto-Optical Properties and Applications

Mou has published papers in a range of scientific journals, with a strong presence in optics-related venues. Frequent publication venues include:

  • Optics Letters
  • Journal of Lightwave Technology
  • Optics Express
  • Optics & Laser Technology
  • IEEE Photonics Technology Letters

Recent notable papers authored or coauthored by Mou are as follows:

  • Carbon nanotube mode-locked fiber lasers: recent progress and perspectives, 2020, Nanophotonics
  • All-fiber bandwidth tunable ultra-broadband mode converters based on long-period fiber gratings and helical long-period gratings, 2020, Optics Express
  • Polarization-Maintaining Fiber Long-Period Grating Based Vector Curvature Sensor, 2021, IEEE Photonics Technology Letters
  • All-fiber ultrafast laser generating gigahertz-rate pulses based on a hybrid plasmonic microfiber resonator, 2020, Advanced Photonics
  • Narrow bandwidth spatiotemporal mode-locked Yb-doped fiber laser, 2022, Optics Letters

Chengbo Mou collaborates frequently with several researchers, including:

  • Yunqi Liu
  • Qianqian Huang
  • Chen Jiang
  • Zinan Huang
  • Lilong Dai

Best Publications

  • Toward a New Generation of Photonic Humidity Sensors

    Stanislav A. Kolpakov;Neil T. Gordon;Chengbo Mou;Kaiming Zhou

  • All-fiber passively mode-locked Tm-doped NOLM-based oscillator operating at 2-μm in both soliton and noisy-pulse regimes.

    Jianfeng Li;Zuxing Zhang;Zhongyuan Sun;Hongyu Luo

  • Line-by-Line Fiber Bragg Grating Made by Femtosecond Laser

    Kaiming Zhou;Mykhaylo Dubov;Chengbo Mou;Lin Zhang

  • Polarisation Dynamics of Vector Soliton Molecules in Mode Locked Fibre Laser

    Veronika Tsatourian;Sergey V. Sergeyev;Chengbo Mou;Alex Rozhin

  • Carbon nanotubes for ultrafast fibre lasers

    Maria Chernysheva;Aleksey Rozhin;Yuri Fedotov;Chengbo Mou

  • All-fiber polarization locked vector soliton laser using carbon nanotubes.

    C. Mou;S. Sergeyev;A. Rozhin;S. Turistyn

  • All-fiber mode converter based on long-period fiber gratings written in few-mode fiber

    Yunhe Zhao;Yunqi Liu;Chenyi Zhang;Liang Zhang

  • Spiral attractor created by vector solitons

    Sergey V. Sergeyev;Chengbo Mou;Elena G. Turitsyna;Alexey Rozhin

  • Passively Q-switched erbium-doped fiber laser using evanescent field interaction with gold-nanosphere based saturable absorber

    Dengfeng Fan;Chengbo Mou;Xuekun Bai;Shaofei Wang

  • Spectrum-, pulsewidth-, and wavelength-switchable all-fiber mode-locked Yb laser with fiber based birefringent filter

    Y.S. Fedotov;S.M. Kobtsev;R.N. Arif;Alex Rozhin

  • All-fiber passively mode-locked femtosecond laser using a 45º-tilted fiber grating polarization element

    Chengbo Mou;Hua Wang;Brandon G. Bale;Kaiming Zhou

  • Pabively Q-switched erbium-doped fiber laser using Fe3O4-nanoparticle saturable absorber

    Xuekun Bai;Chengbo Mou;Chengbo Mou;Luxi Xu;Shaofei Wang

  • UV-Inscription, Polarization-Dependant Loss Characteristics and Applications of 45 $^{\circ}$ Tilted Fiber Gratings

    Zhijun Yan;Chengbo Mou;Kaiming Zhou;Xianfeng Chen

  • High Power Q-Switched Thulium Doped Fibre Laser using Carbon Nanotube Polymer Composite Saturable Absorber

    Maria Chernysheva;Chengbo Mou;Chengbo Mou;Raz Arif;Raz Arif;Mohammed AlAraimi

  • Passively harmonic mode locked erbium doped fiber soliton laser with carbon nanotubes based saturable absorber

    Chengbo Mou;Raz Arif;Aleksey Rozhin;Sergei Turitsyn

  • L -Band GHz Femtosecond Passively Harmonic Mode-Locked Er-Doped Fiber Laser Based on Nonlinear Polarization Rotation

    Yuanda Ling;Qianqian Huang;Chuanhang Zou;Zhikun Xing

  • Bound state vector solitons with locked and precessing states of polarization.

    Chengbo Mou;Sergey V. Sergeyev;Aleksey G. Rozhin;Sergei K. Turitsyn

  • Humidity Sensor Based on a Long-Period Fiber Grating Coated with Polymer Composite Film

    Yunlong Wang;Yunqi Liu;Fang Zou;Fang Zou;Chen Jiang

  • Carbon nanotube mode-locked fiber lasers: recent progress and perspectives

    Lilong Dai;Zinan Huang;Qianqian Huang;Chang Zhao

  • All-fiber polarization interference filters based on 45°-tilted fiber gratings

    Zhijun Yan;Chengbo Mou;Hushan Wang;Kaiming Zhou

  • Smart structure sensors based on embedded fibre Bragg grating arrays in aluminium alloy matrix by ultrasonic consolidation

    Chengbo Mou;Pouneh Saffari;Dezhi Li;Kaiming Zhou

  • All-fiber bandwidth tunable ultra-broadband mode converters based on long-period fiber gratings and helical long-period gratings.

    Xinyi Zhao;Yunqi Liu;Zuyao Liu;Chengbo Mou

  • Liquid level sensor based on an excessively tilted fibre grating

    Chengbo Mou;Kaiming Zhou;Zhijun Yan;Hongyan Fu

  • Vector solitons with locked and precessing states of polarization

    Sergey V Sergeyev;Chengbo Mou;Aleksey Rozhin;Sergei K Turitsyn

Frequent Co-Authors

Kaiming Zhou
Kaiming Zhou Aston University
Sergei K. Turitsyn
Sergei K. Turitsyn Aston University
Ian Bennion
Ian Bennion Aston University
Kyriacos Kalli
Kyriacos Kalli Cyprus University of Technology
Jianfeng Li
Jianfeng Li University of Electronic Science and Technology of China
Gang-Ding Peng
Gang-Ding Peng University of New South Wales
Sailing He
Sailing He Zhejiang University
Fei Xu
Fei Xu Nanjing University
Yan-qing Lu
Yan-qing Lu Nanjing University
Fufei Pang
Fufei Pang Shanghai University

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