Opto-thermoelectric trapping of fluorescent nanodiamonds on plasmonic nanostructures

Author:

Shukla Ashutosh1,Tiwari Sunny12,Majumder Ayan3,Saha Kasturi3,Pavan Kumar G. V.1ORCID

Affiliation:

1. Indian Institute of Science Education and Research

2. University of Oxford

3. Indian Institute of Technology

Abstract

Deterministic optical manipulation of fluorescent nanodiamonds (FNDs) in fluids has emerged as an experimental challenge in multimodal biological imaging. Designing and developing nano-optical trapping strategies to serve this purpose is an important task. In this Letter, we show how chemically prepared gold nanoparticles and silver nanowires can facilitate an opto-thermoelectric force to trap individual entities of FNDs using a long working distance lens, low power-density illumination (532-nm laser, 12 µW/µm2). Our trapping configuration combines the thermoplasmonic fields generated by individual plasmonic nanoparticles and the opto-thermoelectric effect facilitated by the surfactant to realize a nano-optical trap down to a single FND that is 120 nm in diameter. We use the same trapping excitation source to capture the spectral signatures of single FNDs and track their position. By tracking the FND, we observe the differences in the dynamics of the FND around different plasmonic structures. We envisage that our drop-casting platform can be extrapolated to perform targeted, low-power trapping, manipulation, and multimodal imaging of FNDs inside biological systems such as cells.

Funder

Science and Engineering Research Board

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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