Glass microlens arrays (MLAs) have tremendous prospects in the fields of optical communication, sensing and high-sensitivity imaging for their excellent optical properties, high mechanical robustness and physicochemical stability. So far, glass MLAs are primarily fabricated using femtosecond laser modification assisted etching, in which the preparation procedure is time-consuming, with each concave-shaped microlens being processed using a femtosecond laser point by point. In this paper, a new method is proposed for implementing large-scale glass MLAs using glass particle sintering with the assistance of ultraviolet (UV) lithography. The glass particles are dispersed into the photoresist at first, and then immobilized as large-scaled micropi...
We report on the fabrication of high-quality microlens arrays on 4 ' ' , 6 ' '...
The uniformity of large microlens arrays in Fused Silica is governed by the production process. It c...
We present a detail investigation on the development of a series of gradient index (GRIN) optical gl...
This paper presents a micromachining technique to fabricate microlenses using an etched glass master...
This paper presents a micromachining technique to fabricate microlenses using an etched glass master...
This paper presents a micromachining technique to fabricate microlenses using an etched glass master...
A novel low-cost, high-volume fabrication method for glass microlens arrays was developed by combini...
This paper presents a micromachining technique to fabricate microlenses using an etched glass master...
This article reports the fabrication of high-fill-factor plano-convex cylindrical and spherical micr...
Contactless hot embossing is one promising replication-based method for fabrication of high quality ...
The fabrication of arrays consisting of densely ordered circular convex microlenses with diameters o...
This paper presents the fabrication of an array of high aspect ratio photoresist based refractive ...
The fabrication of microlenses is of great interest for several applications in the field of optics ...
The fabrication of micro lens array pattern using UV contact printing followed by thermal reflow. So...
The fabrication of micro lens array pattern using UV contact printing followed by thermal reflow. So...
We report on the fabrication of high-quality microlens arrays on 4 ' ' , 6 ' '...
The uniformity of large microlens arrays in Fused Silica is governed by the production process. It c...
We present a detail investigation on the development of a series of gradient index (GRIN) optical gl...
This paper presents a micromachining technique to fabricate microlenses using an etched glass master...
This paper presents a micromachining technique to fabricate microlenses using an etched glass master...
This paper presents a micromachining technique to fabricate microlenses using an etched glass master...
A novel low-cost, high-volume fabrication method for glass microlens arrays was developed by combini...
This paper presents a micromachining technique to fabricate microlenses using an etched glass master...
This article reports the fabrication of high-fill-factor plano-convex cylindrical and spherical micr...
Contactless hot embossing is one promising replication-based method for fabrication of high quality ...
The fabrication of arrays consisting of densely ordered circular convex microlenses with diameters o...
This paper presents the fabrication of an array of high aspect ratio photoresist based refractive ...
The fabrication of microlenses is of great interest for several applications in the field of optics ...
The fabrication of micro lens array pattern using UV contact printing followed by thermal reflow. So...
The fabrication of micro lens array pattern using UV contact printing followed by thermal reflow. So...
We report on the fabrication of high-quality microlens arrays on 4 ' ' , 6 ' '...
The uniformity of large microlens arrays in Fused Silica is governed by the production process. It c...
We present a detail investigation on the development of a series of gradient index (GRIN) optical gl...