Publication | Closed Access
Design of nanoslotted photonic crystal waveguide cavities for single nanoparticle trapping and detection
66
Citations
11
References
2009
Year
Photonic SensorEngineeringOptomechanicsPhotonic CrystalsConventional WaveguideOptical ManipulationOptical PropertiesSingle Nanoparticle TrappingGuided-wave OpticNumerical SimulationsBiophysicsNanophotonicsPhotonicsPhysicsPhotonic MaterialsBiophotonicsPhotonic DeviceApplied PhysicsOptical Trapping
We design and numerically simulate an on-chip photonic device that integrates both optical manipulation and detection functionalities for a single nanoparticle or macromolecule. A unique combination of a photonic crystal waveguide cavity and a nanoslot structure leads to a approximately 1300 times enhancement of the optical gradient trapping force compared with a conventional waveguide trapping device. Numerical simulations indicate that the designed device is capable of stably trapping a single nanoparticle inside the nanoslot cavity, and thus provides an ideal platform for single particle detection and analysis using cavity-enhanced spectroscopic technologies.
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