Publication | Closed Access
Control of Nanoparticles with Arbitrary Two-Dimensional Force Fields
157
Citations
8
References
2005
Year
NanoparticlesEngineeringMicroscopyNanomechanicsBiophysicsNanoroboticsNanoscale SystemPhysicsNanotechnologyActive MatterBrownian MotionNanophysicsFluorescence MicroscopyNanomaterialsApplied PhysicsScanning Force MicroscopyOptical TrappingDouble-well PotentialsMedicine
An anti-Brownian electrophoretic trap is used to create arbitrary two-dimensional force fields for individual nanoscale objects in solution. The trap couples fluorescence microscopy with digital particle tracking and real-time feedback to generate a position-dependent electrophoretic force on a single nanoparticle. The force may vary over nanometer distances and millisecond times and need not be the gradient of a potential. As illustrations of this technique, I study Brownian motion in harmonic, power-law, and double-well potentials.
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