4.6 Article

Numerical Investigation of a Designed-Inlet Optofluidic Beam Splitter for Split-Angle and Transmission Improvement

Journal

MICROMACHINES
Volume 12, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/mi12101200

Keywords

optofluidics; beam splitter; gradient refractive index; transmission; ray tracing

Funding

  1. Ministry of Science and Technology of the Republic of China in Taiwan [NSC 104-2221-E-006-180]

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A microchannel design is proposed in this study to improve the performance of an optofluidic beam splitter by controlling the height and refractive index gradient of the fluid inlets, resulting in the splitting of incident light into two beams to enhance transmission efficiency. Experimental results demonstrate the device's good performance, with the validity of numerical simulation confirmed.
The beam splitter is one of the important elements in optical waveguide circuits. To improve the performance of an optofluidic beam splitter, a microchannel including a two-stage main channel with divergent side walls and two pairs of inlet channels is proposed. Besides, the height of the inlets injected with cladding fluid is set to be less than the height of other parts of the microchannel. When we inject calcium chloride solution (cladding fluid) and deionized water (core fluid) into the inlet channels, the gradient refractive index (GRIN) developed in fluids flowing through the microchannel splits the incident light beam into two beams with a larger split angle. Moreover, the designed inlets yield a GRIN distribution which increases the light collected around the middle horizontal line on the objective plane, and so enhances the transmission efficiency of the device. To demonstrate the performance of the proposed beam splitter, we use polydimethylsiloxane to fabricate the microchannel. The results obtained by simulation and experiment are compared to show the effectiveness of the device and the validity of numerical simulation. The influence of the microchannel geometry and the flow rate ratio on the performance of the proposed beam splitter is investigated.

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