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Dynamic 3D profiling of microscale surface using a MEMS mirror laser differential confocal microscope
Qingjiu Chen1, Donghai Yang1, Feifei Wang2
1Department of Mechanical Engineering, City University of Hong Kong, Kowloon Tong, Hong Kong.
Scientific Reports
|July 17, 2025
Summary
This study introduces a novel high-speed microscope for real-time 3D micro-surface profiling. It enables nanometer-level resolution imaging of dynamic surfaces, overcoming previous limitations in speed and accuracy.
Area of Science:
- Optics and Photonics
- Materials Science
- Microscopy
Background:
- Existing 3D micro-surface profiling techniques struggle with real-time imaging of dynamic samples at high resolution.
- Profiling rapidly changing or moving surfaces at nanoscale 3D spatial resolution is a significant challenge.
Purpose of the Study:
- To demonstrate a high-speed MEMS mirror-based laser differential confocal microscope for dynamic 3D micro-surface profiling.
- To overcome the limitations of current methods in imaging dynamic surfaces with high resolution.
Main Methods:
- Utilized a MEMS mirror for 2D scanning (1200x650 pixels, 140x90 μm FOV) at 80 frames per second.
- Employed laser differential confocal detection for high-resolution profiling.
- Implemented objective-space telecentric laser projection for uniform axial response.
Main Results:
- Achieved 25 nm axial resolution.
- Enabled real-time 3D micro/nano scale profiling of dynamic surfaces at 80 frames per second.
- Eliminated the need for motion stages, significantly increasing imaging throughput.
Conclusions:
- The developed system provides unprecedented real-time 3D profiling of dynamic microscale surfaces at nanometer-level axial resolutions.
- Offers new insights for process development and quality control in precision micro/nano fabrication.
- Represents a breakthrough in imaging throughput for dynamic surface analysis.
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