Kinetically Locked-In Colloidal Transport in an Array of Optical Tweezers
Abstract
We describe measurements of colloidal transport through arrays of micrometer-scale potential wells created with holographic optical tweezers. Varying the orientation of the trap array relative to the external driving force results in a hierarchy of lock-in transitions analogous to symmetry-selecting processes in a wide variety of systems. Focusing on colloid as a model system provides the first opportunity to observe the microscopic mechanisms of kinetic lock-in transitions and reveals a new class of statistically locked-in states. This particular realization also has immediate applications for continuously fractionating particles, biological cells, and macromolecules.
- Publication:
-
Physical Review Letters
- Pub Date:
- September 2002
- DOI:
- Bibcode:
- 2002PhRvL..89l8301K
- Keywords:
-
- 82.70.Dd;
- 05.45.-a;
- 42.40.-i;
- Colloids;
- Nonlinear dynamics and chaos;
- Holography