An in-plane liquid gradient index (L-GRIN) microlens is designed for dynamically adjusting the beam focusing. The ethylene glycol solution (core liquid) withde-ionized (DI) water (cladding liquid) is co-injected into the lens chamber to form a gradient refractive index profile. The influences of the diffusion coefficient, mass fraction of ethylene glycol and flow rate of liquids on the refractive index profile of L-GRIN microlens are analyzed, and the finite element method and ray tracing method are used to simulate the convection-diffusion process and beam focusing process, which is helpful for the prediction of focusing effects and manipulation of the device. It is found that not only the focal length but the focal spot of the output beam...
We present a detail investigation on the development of a series of gradient index (GRIN) optical gl...
The field of optofluidics is a combination of optics and microfluidics to generate new functionaliti...
This thesis describes research to produce variable focal length microlenses by immersing refractive ...
An in-plane liquid gradient index (L-GRIN) microlens is designed for dynamically adjusting the beam ...
International audienceWe have proposed a new method to achieve gradient refractive-index (GRIN)optic...
International audienceWe have proposed a new method to achieve gradient refractive-index (GRIN)optic...
International audienceWe have proposed a new method to achieve gradient refractive-index (GRIN)optic...
One of the current problems of micro-optofluidics is the choice of a suitable liquid with a high ref...
This paper reports two novel types of variable-locus liquid microlenses with adjustable sensitivity,...
© 2017 Optical Society of America. Electrically controlled micron-scale liquid lenses have been desi...
We construct a numerical model for a liquid microlens formed by filling a microwell with two immisci...
The miniaturization and integration of in-plane micro-lenses into microfluidic networks for improvin...
This research is on a development of a variable focusing microlens system. The studies of modern res...
The field of optofluidics is a combination of optics and microfluidics to generate new functionaliti...
A new polymer microlens with variable focusing properties is designed and fabricated. The microlens ...
We present a detail investigation on the development of a series of gradient index (GRIN) optical gl...
The field of optofluidics is a combination of optics and microfluidics to generate new functionaliti...
This thesis describes research to produce variable focal length microlenses by immersing refractive ...
An in-plane liquid gradient index (L-GRIN) microlens is designed for dynamically adjusting the beam ...
International audienceWe have proposed a new method to achieve gradient refractive-index (GRIN)optic...
International audienceWe have proposed a new method to achieve gradient refractive-index (GRIN)optic...
International audienceWe have proposed a new method to achieve gradient refractive-index (GRIN)optic...
One of the current problems of micro-optofluidics is the choice of a suitable liquid with a high ref...
This paper reports two novel types of variable-locus liquid microlenses with adjustable sensitivity,...
© 2017 Optical Society of America. Electrically controlled micron-scale liquid lenses have been desi...
We construct a numerical model for a liquid microlens formed by filling a microwell with two immisci...
The miniaturization and integration of in-plane micro-lenses into microfluidic networks for improvin...
This research is on a development of a variable focusing microlens system. The studies of modern res...
The field of optofluidics is a combination of optics and microfluidics to generate new functionaliti...
A new polymer microlens with variable focusing properties is designed and fabricated. The microlens ...
We present a detail investigation on the development of a series of gradient index (GRIN) optical gl...
The field of optofluidics is a combination of optics and microfluidics to generate new functionaliti...
This thesis describes research to produce variable focal length microlenses by immersing refractive ...