The research activities focus on cutting-edge advancements in optoelectronics, fiber optic sensors, power semiconductor devices, and related technologies. This multidisciplinary approach combines theoretical modeling, innovative device design, manufacturing, and performance testing to develop state-of-the-art solutions for applications ranging from environmental monitoring to industrial safety systems. Areas of expertise include Surface-Enhanced Raman Spectroscopy (SERS), plasmonic sensors, Lab-on-Fiber (LOF) technologies for acoustic sensing, and the development of advanced fiber optic interrogation systems. Additionally, significant efforts are dedicated to the characterization, simulation, and compact modeling of power semiconductor devices, addressing challenges in efficiency, reliability, and integration. These research initiatives aim to bridge the gap between scientific innovation and practical applications, contributing to technological progress across various fields.
Surface-enhanced Raman spectroscopy (SERS) and plasmonic sensors represent advanced analytical techniques that leverage the interaction between light and nanostructured metallic surfaces to enhance the detection of molecular signals...
The research activities on power semiconductor devices span three main areas: (1) experiment and characterization, (2) analysis and design via TCAD simulations, and (3) the development of compact circuit models for power devices...
Programmable digital circuits are advancing healthcare technology by integrating cutting-edge sensor solutions with embedded circuits and systems, alongside the innovative potential of Edge AI. This synergy supports health-focused electronics...
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