We propose dual-detection confocal reflectance microscopy (DDCRM) for high-speed 3D surface profiling. In comparison with conventional confocal microscopy, DDCRM can realize surface profiling without axial scanning. DDCRM is composed of two point detectors, each with a pinhole of different size. The ratio of the axial response curves measured by the two detectors provides the relationship between the axial position of the sample and the ratio of the intensity signals. Furthermore, DDCRM has a normalizing effect which allows this method to accurately measure the height of samples with various reflectance characteristics.This work was supported by the National Research Foundation of Korea (NRF) grant funded by the Korean government (MSIP) (No...
We propose a new structure of confocal imaging system based on a direct-view confocal microscope (DV...
In this report a proficient method is suggested to measure the geometric dimensions of a micro chann...
We have developed a novel confocal microscopy system, which can perform both axial and lateral scann...
We propose a multipoint scanning dual-detection confocal microscopy (MS-DDCM) system for fast 3D vol...
We propose a new method for high-speed, three-dimensional (3-D) fluorescence imaging, which we refer...
We propose a new method for high-speed, three-dimensional (3-D) fluorescence imaging, which we refer...
Chromatic confocal microscopy (CCM) is a promising technology that enables high-speed three-dimensio...
An adaptive microscope with axial chromatic encoding is designed and developed, namely the AdaScope....
Confocal microscopy is a powerful tool that has been used in the development of 3D profilometers for...
Quantitative surface measurement is an important field in engineering. Due to the complexity of surf...
Conventional confocal 3D microscopes suffer from a slow measurement speed due to its requirement of ...
The measurement of three-dimensional samples at high speed is essential for many applications, eithe...
The most common optical technologies for surface topography measurement are coherence scanning inter...
Re-scan confocal microscopy (RCM) is a new super-resolution technique based on a standard confocal m...
Most 3D metrological microscopes used today require a scanning through the optical axis, which is ti...
We propose a new structure of confocal imaging system based on a direct-view confocal microscope (DV...
In this report a proficient method is suggested to measure the geometric dimensions of a micro chann...
We have developed a novel confocal microscopy system, which can perform both axial and lateral scann...
We propose a multipoint scanning dual-detection confocal microscopy (MS-DDCM) system for fast 3D vol...
We propose a new method for high-speed, three-dimensional (3-D) fluorescence imaging, which we refer...
We propose a new method for high-speed, three-dimensional (3-D) fluorescence imaging, which we refer...
Chromatic confocal microscopy (CCM) is a promising technology that enables high-speed three-dimensio...
An adaptive microscope with axial chromatic encoding is designed and developed, namely the AdaScope....
Confocal microscopy is a powerful tool that has been used in the development of 3D profilometers for...
Quantitative surface measurement is an important field in engineering. Due to the complexity of surf...
Conventional confocal 3D microscopes suffer from a slow measurement speed due to its requirement of ...
The measurement of three-dimensional samples at high speed is essential for many applications, eithe...
The most common optical technologies for surface topography measurement are coherence scanning inter...
Re-scan confocal microscopy (RCM) is a new super-resolution technique based on a standard confocal m...
Most 3D metrological microscopes used today require a scanning through the optical axis, which is ti...
We propose a new structure of confocal imaging system based on a direct-view confocal microscope (DV...
In this report a proficient method is suggested to measure the geometric dimensions of a micro chann...
We have developed a novel confocal microscopy system, which can perform both axial and lateral scann...