We report a novel method to fabricate high zoom-ratio optofluidic compound microlenses using poly (dimethylsiloxane) with multi-layer architecture. The layered structure of deformable lenses, biconvex and plano-concave, are self-aligned as a group. The refractive index contrast of each lens, which is controlled by filling the chambers with a specific medium, is the key factor for determining the device's numerical aperture. The chip has multiple independent pneumatic valves that can be digitally switched on and off, pushing the liquid into the lens chambers with great accuracy and consistency. This quickly and precisely tunes the focal length of the microlens device from centimetres to sub-millimetre. The system has great potential for...
We present a high-numerical aperture, doublet microlens array for imaging micron-sized objects. The ...
The interest in dynamically tuning light has attracted great attention to the fabrication of tunable...
The miniaturization and integration of in-plane micro-lenses into microfluidic networks for improvin...
A new polymer microlens with variable focusing properties is designed and fabricated. The microlens ...
A novel type of liquid microlens, bounded by a microfabricated, distensible membrane and activated b...
This work presents a technique for fabricating biconvex polymer microlenses using microfluidics, and...
A real-time dynamically tunable-focus microlens array made from a polymer-liquid-crystal (LC) compos...
A real-time dynamically tunable-focus microlens array made from a polymer-liquid-crystal (LC) compos...
A microlens array made of polymer/nanosized polymer-dispersed liquid crystal (nano-PDLC) is demonstr...
This paper reports two novel types of variable-locus liquid microlenses with adjustable sensitivity,...
Micro-scale optical components play a crucial role in imaging and display technology, biosensing, be...
Here we present a new method to make liquid lenses. It is based on the microfluidics method and invo...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Cata...
We present a flexible variable-focus converging microlens actuated by electrowetting on dielectric (...
A microlens array made of polymer/nanosized polymer-dispersed liquid crystal (nano-PDLC) is demonstr...
We present a high-numerical aperture, doublet microlens array for imaging micron-sized objects. The ...
The interest in dynamically tuning light has attracted great attention to the fabrication of tunable...
The miniaturization and integration of in-plane micro-lenses into microfluidic networks for improvin...
A new polymer microlens with variable focusing properties is designed and fabricated. The microlens ...
A novel type of liquid microlens, bounded by a microfabricated, distensible membrane and activated b...
This work presents a technique for fabricating biconvex polymer microlenses using microfluidics, and...
A real-time dynamically tunable-focus microlens array made from a polymer-liquid-crystal (LC) compos...
A real-time dynamically tunable-focus microlens array made from a polymer-liquid-crystal (LC) compos...
A microlens array made of polymer/nanosized polymer-dispersed liquid crystal (nano-PDLC) is demonstr...
This paper reports two novel types of variable-locus liquid microlenses with adjustable sensitivity,...
Micro-scale optical components play a crucial role in imaging and display technology, biosensing, be...
Here we present a new method to make liquid lenses. It is based on the microfluidics method and invo...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Cata...
We present a flexible variable-focus converging microlens actuated by electrowetting on dielectric (...
A microlens array made of polymer/nanosized polymer-dispersed liquid crystal (nano-PDLC) is demonstr...
We present a high-numerical aperture, doublet microlens array for imaging micron-sized objects. The ...
The interest in dynamically tuning light has attracted great attention to the fabrication of tunable...
The miniaturization and integration of in-plane micro-lenses into microfluidic networks for improvin...