Publication | Open Access
Flexible optofluidic waveguide platform with multi-dimensional reconfigurability
27
Citations
34
References
2016
Year
Photonic SensorWaveguidesEngineeringAnalytical MicrosystemsBiomedical EngineeringMicro-optical ComponentProgrammable PhotonicsOptical WaveguideGuided-wave OpticMicroscale SystemMicrofluidicsBiophysicsPlanar Waveguide SensorNanophotonicsPhotonicsPhotonic MaterialsBiophotonicsWaveguide PropertiesDynamic ReconfigurationOptical SensorsMulti-dimensional ReconfigurabilityFlexible ElectronicsMicrofabricationLab-on-a-chipOptoelectronics
Dynamic reconfiguration of photonic function is one of the hallmarks of optofluidics. A number of approaches have been taken to implement optical tunability in microfluidic devices. However, a device architecture that allows for simultaneous high-performance microfluidic fluid handling as well as dynamic optical tuning has not been demonstrated. Here, we introduce such a platform based on a combination of solid- and liquid-core polydimethylsiloxane (PDMS) waveguides that also provides fully functioning microvalve-based sample handling. A combination of these waveguides forms a liquid-core multimode interference waveguide that allows for multi-modal tuning of waveguide properties through core liquids and pressure/deformation. We also introduce a novel lifting-gate lightvalve that simultaneously acts as a fluidic microvalve and optical waveguide, enabling mechanically reconfigurable light and fluid paths and seamless incorporation of controlled particle analysis. These new functionalities are demonstrated by an optical switch with >45 dB extinction ratio and an actuatable particle trap for analysis of biological micro- and nanoparticles.
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