Short Biography
Jin Li is currently a full professor at the school of instrumentation and optoelectronic engineering, Beihang University. He studied and worked at the University of Cambridge, Complutense University of Madrid, the University of Stuttgart, the University of Tokyo, the Chinese Academy of Sciences, and Tsinghua University. Currently, more than 160 papers have been published in high-quality journals, such as Light Science & Applications, Nature Communications, PhotoniX, Advanced Science, ACS Nano, Research, IEEE Transactions, etc. More than 50 invention patents have been applied or authorized. A monograph has been published in Springer Nature, and many national and provincial awards and honors have been received.
Research Area
Quantum precision measurement and atomic magnetometer
Micro-nano Optics and applications
Metasurfaces and metasurface holography
Holographic display and three-dimensional display
Optical imaging and image/signal processing
Advanced optoelectronic devices and sensors
Micro-nano preparation and devices and systems
Courses
Foundations of quantum Precision Measurement
Geomagnetic quantum sensor technology
Biomedical photonics
Papers & Books
PhotoniX(2025)—Phase-Gradient Metasurface Enables Atomic Spin Chirality Detection for Elliptically Polarized Laser-Pumped Atomic Magnetometer.
Advanced Science (2025)—Polarization-Improved Bidirectional-Pump Atomic Magnetometer Based on Spin-Decoupled Metasurface.
ACS Nano (2025)–Colloidal Nanoparticle Metasurfaces: Principles, Fabrication, and Applications.
Research (2025)–Generative Artificial Intelligence in the Metaverse Era: A Review on Models and Applications.
Laser & Photonics Reviews(2025)-Ferrofluid‐Assisted Dynamic Metasurface 3D Holography Endowed With Rapid, Linear, and High‐Contrast Color Modulation.
Advanced Optical Materials(2025)—Realistic Dynamic Metasurface Three-Dimensional Holographic Display by Arbitrary Space-Selection via Wavefront Shaping.
Laser & Photonics Reviews(2024)— High Space‐Bandwidth‐Product (SBP) Hologram Carriers Toward Photorealistic 3D Holography.
Microsystems & Nanoengineering(2024)—Dynamic 3D metasurface holography via cascaded polymer dispersed liquid crystal.
Engineering Applications of Artificial Intelligence (2024)—Image semantic segmentation approach based on DeepLabV3 plus network with an attention mechanism.
Expert Systems with Applications (2023)—Real-time vehicle detection algorithm based on a lightweight You-Only-Look-Once (YOLOv5n-L) approach.
Light: Science & Applications (2022)–Holobricks: modular coarse integral holographic displays.
Nature Communications(2022)–Turing patterns with high-resolution formed without chemical reaction in thin-film solution of organic semiconductors.