Using the method of photoresist reflow and inductively coupled plasma dry etching, we have fabricated microlens arrays in type-IIa natural single-crystal diamond, with diameters down to 10 µm. The surface profile of the microlenses was characterized by atomic force microscopy and was found to match well with a spherical shape, with a surface roughness of better than 1.2 nm. To characterize the optical properties of these diamond microlens arrays, a laser scanning reflection/transmission confocal microscopy technique has been developed. This technique enabled the surface profile of the microlenses to be measured simultaneously with optical parameters including focal length and spot size, opening up an application area for confocal microscopy
AbstractThe design and fabrication of large radii of curvature micro-lenses in single crystal chemic...
THESIS 8132Liquid crystal variable focal length microlenses are designed, fabricated and tested for ...
Methods of fabricating negative and bifocal microlens arrays have been demonstrated in this paper. T...
Using the method of photoresist reflow and inductively coupled plasma dry etching, we have fabricate...
Advantageous properties including optical transparency, high thermal conductivity, and high carrier ...
Owing to its hardness and chemical inertness, most of the previous studies to fabricate structures a...
Refractive microlenses with diameters of between a few micrometers to a few hundred micrometers have...
Double-sided micro-lenses have been successfully fabricated on natural diamond substrates using phot...
Micro-cylindrical and micro-ring lenses have been fabricated on chemical vapour deposition (CVD) dia...
Using the methods of photoresist reflow and moulding, bifocal and negative microlens arrays, with di...
Using the methods of photoresist reflow and moulding, bifocal and negative microlens arrays, with di...
Imaging properties of the concave microlens are presented. Microlenses are produced by using tot'hem...
The design and fabrication of large radii of curvature micro-lenses in single crystal chemical vapou...
Large-area concave refractive microlens arrays, or concave template structures, and then the non-ref...
International audienceWe present a quantitative study on the fabrication of microlenses using a low-...
AbstractThe design and fabrication of large radii of curvature micro-lenses in single crystal chemic...
THESIS 8132Liquid crystal variable focal length microlenses are designed, fabricated and tested for ...
Methods of fabricating negative and bifocal microlens arrays have been demonstrated in this paper. T...
Using the method of photoresist reflow and inductively coupled plasma dry etching, we have fabricate...
Advantageous properties including optical transparency, high thermal conductivity, and high carrier ...
Owing to its hardness and chemical inertness, most of the previous studies to fabricate structures a...
Refractive microlenses with diameters of between a few micrometers to a few hundred micrometers have...
Double-sided micro-lenses have been successfully fabricated on natural diamond substrates using phot...
Micro-cylindrical and micro-ring lenses have been fabricated on chemical vapour deposition (CVD) dia...
Using the methods of photoresist reflow and moulding, bifocal and negative microlens arrays, with di...
Using the methods of photoresist reflow and moulding, bifocal and negative microlens arrays, with di...
Imaging properties of the concave microlens are presented. Microlenses are produced by using tot'hem...
The design and fabrication of large radii of curvature micro-lenses in single crystal chemical vapou...
Large-area concave refractive microlens arrays, or concave template structures, and then the non-ref...
International audienceWe present a quantitative study on the fabrication of microlenses using a low-...
AbstractThe design and fabrication of large radii of curvature micro-lenses in single crystal chemic...
THESIS 8132Liquid crystal variable focal length microlenses are designed, fabricated and tested for ...
Methods of fabricating negative and bifocal microlens arrays have been demonstrated in this paper. T...