Adaptive micro-lenses enable the design of very compact optical systems with tunable imaging properties. Conventional adaptive micro-lenses suffer from substantial spherical aberration that compromises the optical performance of the system. Here, we introduce a novel concept of liquid micro-lenses with superior imaging performance that allows for simultaneous and independent tuning of both focal length and asphericity. This is achieved by varying both hydrostatic pressures and electric fields to control the shape of the refracting interface between an electrically conductive lens fluid and a non-conductive ambient fluid. Continuous variation from spherical interfaces at zero electric field to hyperbolic ones with variable ellipticity for fi...
We propose a new design for tuning the astigmatism of liquid micro-lenses using electric field and h...
The field of optofluidics is a combination of optics and microfluidics to generate new functionaliti...
Optical lenses with electrically controllable focal length are of growing interest, in order to redu...
Adaptive micro-lenses enable the design of very compact optical systems with tunable imaging propert...
We present a novel design of an exclusively electrically controlled adaptive optofluidic lens that a...
In this work, we use the numerical simulation platform Zemax to investigate the optical properties o...
The meniscus between two immiscible liquids can be used as an optical lens. A change in curvature of...
Usually, an adaptive liquid lens only has a positive focal length, which severely limits its applica...
By means of numerical simulations, using a computational fluid dynamics software together with an op...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)We propose a new design for tuni...
We demonstrate an adaptive mechanical-wetting lens with a concentric reservoir to reduce image aberr...
We report a complete theoretical model and supporting experimental results on the fabrication and ch...
Optofluidics is a rapidly growing versatile branch of adaptive optics including a wide variety of ap...
We demonstrated a liquid lens whose focal length can be controlled by a servo motor. The lens cell i...
The Final Year Project (FYP) undertaken by the author is B448 – Design and Investigation of Micro O...
We propose a new design for tuning the astigmatism of liquid micro-lenses using electric field and h...
The field of optofluidics is a combination of optics and microfluidics to generate new functionaliti...
Optical lenses with electrically controllable focal length are of growing interest, in order to redu...
Adaptive micro-lenses enable the design of very compact optical systems with tunable imaging propert...
We present a novel design of an exclusively electrically controlled adaptive optofluidic lens that a...
In this work, we use the numerical simulation platform Zemax to investigate the optical properties o...
The meniscus between two immiscible liquids can be used as an optical lens. A change in curvature of...
Usually, an adaptive liquid lens only has a positive focal length, which severely limits its applica...
By means of numerical simulations, using a computational fluid dynamics software together with an op...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)We propose a new design for tuni...
We demonstrate an adaptive mechanical-wetting lens with a concentric reservoir to reduce image aberr...
We report a complete theoretical model and supporting experimental results on the fabrication and ch...
Optofluidics is a rapidly growing versatile branch of adaptive optics including a wide variety of ap...
We demonstrated a liquid lens whose focal length can be controlled by a servo motor. The lens cell i...
The Final Year Project (FYP) undertaken by the author is B448 – Design and Investigation of Micro O...
We propose a new design for tuning the astigmatism of liquid micro-lenses using electric field and h...
The field of optofluidics is a combination of optics and microfluidics to generate new functionaliti...
Optical lenses with electrically controllable focal length are of growing interest, in order to redu...