Effective field theory approach to fluctuation-induced forces between colloids at an interface
arXiv:1211.4071 · doi:10.1103/PhysRevE.85.011140
Abstract
We discuss an effective field theory (EFT) approach to the computation of fluctuation-induced interactions between particles bound to a thermally fluctuating fluid surface controlled by surface tension. By describing particles as points, EFT avoids computing functional integrals subject to difficult constraints. Still, all information pertaining to particle size and shape is systematically restored by amending the surface Hamiltonian with a derivative expansion. The free energy is obtained as a cumulant expansion, for which straightforward techniques exist. We derive a complete description for rigid axisymmetric objects, which allows us to develop a full asymptotic expansion in powers of the inverse distance for the pair interaction. We also demonstrate by a few examples the efficiency with which multibody interactions can be computed. Moreover, although the main advantage of the EFT approach lies in explicit computation, we discuss how one can infer certain features of cases involving flexible or anisotropic objects. The EFT description also permits a systematic computation of ground-state surface-mediated interactions, which we illustrate with a few examples.
References in corpus (11)
- Casimir forces between arbitrary compact objects
- The Casimir effect: from quantum to critical fluctuations
- The Casimir effect for a sphere and a cylinder in front of plane and corrections to the proximity force theorem
- Casimir Forces between Compact Objects: I. The Scalar Case
- Spin induced multipole moments for the gravitational wave flux from binary inspirals to third Post-Newtonian order
- TASI Lectures on Effective Field Theories
- 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
- Exact Casimir Interaction Between Semitransparent Spheres and Cylinders
- Anisotropies in thermal Casimir interactions: ellipsoidal colloids trapped at a fluid interface
- Partition Functions on the Euclidean Plane with Compact Boundaries in Conformal and Non-Conformal Theories
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- Formation probabilities in quantum critical chains and Casimir effect
- Finite size corrections to scaling of the formation probabilities and the Casimir effect in the conformal field theories
- Classification of the sign of the critical Casimir force in two dimensional systems at asymptotically large separations
- Three Body Fluctuation-Induced Interaction at Fluid Interfaces: A Strong Deviation from the Pairwise Summation
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- Membrane protein clustering from tension and multibody interactions
- Reversing the Critical Casimir force by shape deformation