학술논문

Tunable meta-fluidic-materials base on multilayered microfluidic system
Document Type
Conference
Source
2014 IEEE 27th International Conference on Micro Electro Mechanical Systems (MEMS) Micro Electro Mechanical Systems (MEMS), 2014 IEEE 27th International Conference on. :88-91 Jan, 2014
Subject
Fields, Waves and Electromagnetics
Microfluidics
Metamaterials
Optical polarization
Magnetic liquids
Optical pumping
Language
ISSN
1084-6999
Abstract
We demonstrate a multilayered microfluidic system with a flexible substrate, which has tunable optical chirality within THz spectrum range. The optical properties of the multilayered microfluidic system can be tuned by either changing the liquid pumped into each layer or stretching the flexible substrate. In experiment, the polarization rotation angle is tuned from zero (non-chiral structure) to 16.9° (strong-chiral structure). Furthermore, the tuning resolution can be well controlled due to the fine refractive index change of the liquid with different concentrations. It is feasible for the multilayered microfluidic structure to be integrated to an optofluidic system, where strong or tunable optical chirality are needed, which not only can be used as traditional optical components such as THz polarizers and filters but also has potential applications on imaging and sensor of bio-materials.