Three Body Fluctuation-Induced Interaction at Fluid Interfaces: A Strong Deviation from the Pairwise Summation
arXiv:1212.4558 · doi:10.1103/PhysRevE.87.020301
Abstract
We present a new method based on the scattering technique to investigate fluctuation-induced forces at a fluid interface. The scattering approach, well suited to the study of many body systems of arbitrary geometries, is augmented to include boundary fluctuations. Using this method, we study the deviation of the total fluctuation-induced interaction from the sum of pairwise energies for three colloidal particles. We consider both frozen and fluctuating colloids and obtain a very good agreement between analytical and numerical results. We find a marked difference in the three body fluctuation-induced free energy between the frozen and fluctuating colloids, both in sign and relative size.
References in corpus (7)
- Casimir forces between arbitrary compact objects
- Casimir Forces between Compact Objects: I. The Scalar Case
- Ellipsoidal particles at fluid interfaces
- Effective forces between colloids at interfaces induced by capillary wave-like fluctuations
- The Importance of Boundary Conditions for Fluctuation Induced Forces between Colloids at Interfaces
- Effective field theory approach to fluctuation-induced forces between colloids at an interface
- Anisotropies in thermal Casimir interactions: ellipsoidal colloids trapped at a fluid interface