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Particle sensing with confined optical field enhanced fluorescence emission (Cofefe).

OPTICS EXPRESS(2018)

Cited 2|Views35
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Abstract
We describe the development and performance of a new type of optical sensor suitable for registering the binding/dissociation of nanoscopic particles near a gold sensing surface. The method shares similarities with surface plasmon resonance microscopy but uses a completely different optical signature for reading out binding events. This new optical read-out mechanism, which we call confined optical field enhanced fluorescence emission (Cofefe), uses pulsed surface plasmon polariton fields at the gold/liquid interface that give rise to confined optical fields upon binding of the target particle to the gold surface. The confined near-fields are sufficient to induce two-photon absorption in the gold sensor surface near the binding site. Subsequent radiative recombination of the electron-hole pairs in the gold produces fluorescence emission, which can be captured by a camera in the far-field. Bound nanoparticles show up as bright confined spots against a dark background on the camera. We show that the Cofefe sensor is capable of detecting gold and silicon nanoparticles, as well as polymer nanospheres and sub-mu m lipid droplets in a label-free manner with average illumination powers of less than 10 mu W/mu m(2). (C) 2018 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
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Key words
fluorescence emission,optical field,cofefe,particle
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