Interface Photonics Lab
介面光電實驗室
About us
Interface Photonic Laboratory (IPL) focuses on analyzing the quality and defects of semiconductor surface interfaces. Through its developed nonlinear optical analysis techniques and various optical analyses, combined with physical AI analysis and physical model interpretation, the laboratory provides solutions and physical causal analysis for problems encountered in advanced semiconductor thin film processes (such as ALD growth methods and differences in process conditions).
Our laboratory also provides physical models and solutions for bottlenecks in practical applications or product development.
介面光子學實驗室(IPL)專注於半導體表面與介面品質及缺陷的分析。本實驗室利用自主研發的非線性光學分析技術及多種光學分析手段,結合物理AI分析與物理模型解讀,針對先進半導體薄膜製程(如ALD生長方法及製程條件差異等)中遇到的問題,提供解決方案及物理因果分析。
此外,本實驗一開發室溫氣體感測器,及針對實際應用或產品開發過程中遇到的瓶頸問題,本實驗室也提供對應的實體模型與解決方案。

Research
IPL estabishes many strategic nonlinear optical methods to study low-dimenstional structure and materials. We have fruitful results on inspecting ultrathin film of advanced process, including composite, dopant concentration and defects. Among advanced process, the deposition of atomic layer deposition (ALD) can not avoid the defects occurred in the interface or bulk. We offer specialized methods for studying them that go beyond the capabilities of TEM.
IPL utilizes its developed nonlinear optical techniques for the analysis of two-dimensional materials, enabling precise analysis of the reactions of two-dimensional materials to different gases and the effects of moisture, which will have a significant impact on the development of room temperature sensors. IPL is also actively developing new nonlinear optical techniques and physical analyses for the surface defect analysis of two-dimensional materials, achieving higher defect resolution and integrating and connecting various existing analysis techniques.
IPL also focuses on sensor development, using PINN (Physical Informed Neural Network) for error message elimination and data analysis, resulting in higher sensor accuracy and wider applications.