Casimir Forces between Compact Objects: I. The Scalar Case
T. Emig, N. Graham, R. L. Jaffe, M. Kardar

TL;DR
This paper introduces an exact method for calculating Casimir forces between arbitrary-shaped objects using scattering matrices, demonstrated on scalar fields with Robin boundary conditions, revealing complex force behaviors.
Contribution
The authors develop a general scattering matrix approach for Casimir interactions between multiple objects, extending beyond pairwise approximations and applicable to various boundary conditions.
Findings
Analytical large separation Casimir force for Robin spheres.
Numerical results for all separations showing force sign changes.
Deviations from proximity force approximation at short distances.
Abstract
We have developed an exact, general method to compute Casimir interactions between a finite number of compact objects of arbitrary shape and separation. Here, we present details of the method for a scalar field to illustrate our approach in its most simple form; the generalization to electromagnetic fields is outlined in Ref. [1]. The interaction between the objects is attributed to quantum fluctuations of source distributions on their surfaces, which we decompose in terms of multipoles. A functional integral over the effective action of multipoles gives the resulting interaction. Each object's shape and boundary conditions enter the effective action only through its scattering matrix. Their relative positions enter through universal translation matrices that depend only on field type and spatial dimension. The distinction of our method from the pairwise summation of two-body potentials…
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Taxonomy
TopicsQuantum Electrodynamics and Casimir Effect · Mechanical and Optical Resonators
