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Opt Lett ; 41(24): 5680-5683, 2016 Dec 15.
Article in English | MEDLINE | ID: mdl-27973488

ABSTRACT

Using an optical microfiber coupler (MC), we present a microfluidic platform for strong direct or indirect light-liquid interaction by wrapping a MC around a functionalized capillary. The light propagating in the MC and the liquid flowing in the capillary can be combined and divorced smoothly, keeping a long-distance interaction without the conflict of input and output coupling. Using this approach, we experimentally demonstrate a "hot-wire" microfluidic flowmeter based on a gold-integrated helical MC device. The microfluid inside the glass channel takes away the heat, then cools the MC and shifts the resonant wavelength. Due to the long-distance interaction and high temperature sensitivity, the proposed microfluidic flowmeter shows an ultrahigh flow rate sensitivity of 2.183 nm/(µl/s) at a flow rate of 1 µl/s. The minimum detectable change of the flow rate is around 9 nl/s at 1 µl/s.

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