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We present opto-thermoelectric speckle tweezers (OTEST) for large-scale and high-throughput trapping of particles. OTEST combine optical speckle with plasmonic substrate to generate a thermal speckle field that consists of many random thermal hotspots to trap a large number of particles using thermoelectric forces. We demonstrate trapping of dielectric and metallic particles with sizes as small as 100 nm in the speckle field. Finally, we integrate OTEST with microfluidic systems to demonstrate filtration of the smaller-sized particles from a mixed solution of 200 nm and 1 µm particles.
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