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Updated: Apr 20, 2026

Trapping of Micro Particles in Nanoplasmonic Optical Lattice
Published on: September 5, 2017
Precise attoliter temperature control of nanopore sensors using a nanoplasmonic bullseye
Colin R Crick1, Pablo Albella, Binghao Ng
1Department of Chemistry and ‡Department of Physics, Imperial College London , South Kensington Campus, London, SW7 2AZ, United Kingdom.
Abstract:
Targeted temperature control in nanopores is greatly important in further understanding biological molecules. Such control would extend the range of examinable molecules and facilitate advanced analysis, including the characterization of temperature-dependent molecule conformations. The work presented within details well-defined plasmonic gold bullseye and silicon nitride nanopore membranes. The bullseye nanoantennae are designed and optimized using simulations and theoretical calculations for interaction with 632.8 nm laser light. Laser heating was monitored experimentally through nanopore conductance measurements. The precise heating of nanopores is demonstrated while minimizing the accumulation of heat in the surrounding membrane material.

