Kuikui Guo
Papers
2
Total Citations
59
H-Index
2
About
Kuikui Guo is a leading researcher in the field of fiber optic sensing, with a focus on advanced photonic devices for simultaneous multi-parameter measurements. Their work centers on the development of highly birefringent fiber Bragg gratings (Hi-Bi FBGs) and distributed feedback fiber lasers (DFB-FLs) fabricated using femtosecond laser inscription. Guo’s major contributions include the creation of a sawtooth stressor-assisted Hi-Bi FBG that achieves a birefringence of 2.96 × 10⁻⁴, enabling precise simultaneous measurement of strain and temperature—a critical capability for structural health monitoring and aerospace applications. Their 2019 paper on this topic has garnered 39 citations, reflecting its impact on the field. In 2020, Guo extended this approach by demonstrating a dual-polarization DFB-FL sensor with femtosecond laser-inscribed in-fiber stressors, achieving 20 citations for its novel resonant cavity design. Notable achievements include pioneering the use of femtosecond laser irradiation to inscribe stressors directly into fiber cores, a technique that enhances sensor sensitivity and robustness. Guo’s work bridges fundamental photonics and practical sensing, offering innovative solutions for demanding environments where accurate, simultaneous strain and temperature measurements are essential.
Research Focus
Key Achievements
Top Papers
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