王子

作者: 时间:2026-05-11 点击数:

个人基本信息:

王子,男,1995年生于江苏省徐州市睢宁县。2019年毕业于虎尾科技大学电子工程系,获工学学士学位。2025年毕业于台湾科技大学电子工程系,获工学博士学位。现任机电工程学院讲师。


所属系:

光电信息科学与工程


主讲课程:

光纤通信原理,信息光学等


研究领域:

1. 光纤激光器

2. 光纤传感系统融合与量测

3. 光通讯架构设计


教科研项目:

1. 池州学院高层次人才科研启动基金项目,CZ2025YJRC116,主持。

2. 池州学院校级重点自然科学研究项目,CZ2025ZRZ02,主持。

3. 企业委托横向技术开发项目,2025HX0268,主持。


代表性论文/著作:

1. Z. Wang, S. Afifah, S.-K. Liaw*, C.-H. Yeh, and J.-K. Chen, "Stable Sub-KHz Linewidth Fiber Laser using Saturable Absorber Integrated Four-Subring Resonators," IEEE Photonics Technology Letters, vol. 36, no. 2, pp. 63-66, 15 Jan.15, 2024.

2. Z. Wang, J.-K. Wei, P.-C. Chen, S.-K. Liaw*, J.-K. Chen and C.-H. Yeh,"Eight-Wavelength Selectable Single-Longitudinal- Mode Fiber Laser Using 1× 8 Arrayed Waveguide Grating and Passive Triple Subring Resonators," IEEE Photonics Journal, vol. 16, no. 5, pp. 1-7, Oct. 2024.

3. Z. Wang, Y.-E. Zou, C.-Y. Guo, S.-K. Liaw*, Y.-M. Yang, B.-H. Lee, and C.-H. Yeh, "Integration of BOTDA and φ-OTDR Distributed Fiber Sensing for Multiple Parameters Monitoring," Physica Scripta, Article vol. 100, no. 4, p. 13, Apr 2025.

4. Z. Wang, B. Pamukti, F.-C. Meng, S.-K. Liaw, C.-H. Yeh and J.-K. Chen, "Single-Longitudinal Mode Ytterbium-Doped Fiber Laser Using Four 2 × 2 Fiber Couplers for Multiple Subring Ring Cavities," IEEE Journal of Quantum Electronics, vol. 61, no. 2, pp. 1-6, Apr 2025.

5. Z. Wang, Y.-H. Tsai, S.-K. Liaw*, J.-K. Chen, Y.-W. Wang and C.-H. Yeh "Passively Mode-Locked Yb-Doped Fiber Laser Seeded MOPA System for High-Power Pulse Amplification," Fiber and Integrated Optics, vol. 45, no. 2, p.105-117, Feb 2026.

6. B. Pamukti, Z. Wang, M. Fajar, S.-K. Liaw*, C.-H. Yeh and F.-L. Yang. "Deep Learning and Time Series Signal Processing for Bending Detection in Mining Environment Using Optical Fiber Sensor," Optical Fiber Technology, vol. 88, pp.103819, May, 2024.

7. L. Marlina, Z. Wang, M. Fajar, S.-K. Liaw*, and A. Hatta, "Performance Investigation of Underwater Wireless Optical Communication Systems Using RGB lasers with Different Chlorine and Chlorophyll Density," Optics Communications, vol. 590, pp.132021, Oct 2025.


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