Area of research
Electrical and Electronic Engineering · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Materials science, Optics, Fiber laser, Refractive index, Cladding (metalworking), and Optical amplifier.
Neutrophil-to-lymphocyte ratio for predicting postoperative mortality after hip fracture surgery: a systematic review and meta-analysis
Enhancing long-distance optical link performance in MDM systems with multi-stage amplification and systematic design
Wavelength-Independent Low-DMG EDFA for C-Band Inline WDM-MDM Signal Amplification
A gain-equalized FM-EDFA with gain clamping for burst-mode signals in MDM-PON
Comparative experimental study of different fetch distances, interpolation algorithms, source substrate noise, sampling point counts, and resolution for NF of BDFA
Terahertz Metasurface Multidimensional Biosensor Based on Quasi-Bound States in the Continuum for Trace Analyte Detection
Integrated Silicon Photonic Reservoir Computing With PSO Training Algorithm for Fiber Communication Channel Equalization
Hybrid-Pumped Few-Mode Erbium-Doped Fiber Amplifier for Gain Equalization
The Optical Fiber Refractive Index Profile Measurement Based on Phase-Correct Quantitative Phase Microscopy
Comparative experimental study on gain clamping performance of O-band BDFA with different pump schemes at different input powers
The intrinsic mode activation and evolution in fiber splicing based on 3D refractive index profile characterization
Long-distance modal power equalization with hybrid pumped FM-EDFA
A practical in-line FM-EDFA based on cladding pumping for MIMO-free MDM amplification and transmission
Sensitivity Enhanced Magnetic Field Sensor Based on Hollow Core Fiber Fabry-Perot Interferometer and Vernier Effect
Amplification and Transmission System With Matching Multi-Layer Ion-Doped FM-EDFA
Gain Characteristics of Few-Mode EDFA With Different Pump
A Multi-Layer Erbium-Doped Air-Hole-Assisted Few-Mode Fiber with Ultra-Low Differential Modal Gain
Complex Refractive Index Profile Measurement for Special Fibers Using Total Variation Method
High-Precision Mode Decomposition for Few-Mode Fibers Based on Multi-Task Deep Learning
Temperature-insensitive strain sensor based on few-mode fiber
Interval-Adjustable Multi-Wavelength Erbium-Doped Fiber Laser With the assistance of NOLM or NALM
Terfenol-D Based Magnetic Field Sensor With Temperature Independence Incorporating Dual Fiber Bragg Gratings Structure
Simple structure of tapered FBG filled with magnetic fluid to realize magnetic field sensor
Deep subwavelength graphene-dielectric hybrid plasmonic waveguide for compact photonic integration
Simultaneous measurement of strain and temperature based on no-core fiber and two-core fiber
Tunable and interval-adjustable multi-wavelength erbium-doped fiber laser based on cascaded filters with the assistance of NPR
Measurement of Instantaneous Microwave Frequency by Optical Power Monitoring Based on Polarization Interference
Switchable, Widely Tunable and Interval-Adjustable Multi-Wavelength Erbium-Doped Fiber Laser Based on Cascaded Filters
Low-DMD and low-crosstalk few-mode multi-core fiber with air-trench/holes assisted graded-index profile
Switchable and tunable multi-wavelength fiber ring laser employing a cascaded fiber filter