Dirichlet Casimir Energy for a Scalar Field in a Sphere: An Alternative Method
arXiv:0911.3578 · doi:10.1142/S0217751X10048408
Abstract
In this paper we compute the leading order of the Casimir energy for a free massless scalar field confined in a sphere in three spatial dimensions, with the Dirichlet boundary condition. When one tabulates all of the reported values of the Casimir energies for two closed geometries, cubical and spherical, in different space-time dimensions and with different boundary conditions, one observes a complicated pattern of signs. This pattern shows that the Casimir energy depends crucially on the details of the geometry, the number of the spatial dimensions, and the boundary conditions. The dependence of the \emph{sign} of the Casimir energy on the details of the geometry, for a fixed spatial dimensions and boundary conditions has been a surprise to us and this is our main motivation for doing the calculations presented in this paper. Moreover, all of the calculations for spherical geometries include the use of numerical methods combined with intricate analytic continuations to handle many different sorts of divergences which naturally appear in this category of problems. The presence of divergences is always a source of concern about the accuracy of the numerical results. Our approach also includes numerical methods, and is based on Boyer's method for calculating the electromagnetic Casimir energy in a perfectly conducting sphere. This method, however, requires the least amount of analytic continuations. The value that we obtain confirms the previously established result.
17 pages, 7 figures, 2 tables; Accepted for publication in Int. J. Mod. Phys. A
References in corpus (17)
- Precise comparison of theory and new experiment for the Casimir force leads to stronger constraints on thermal quantum effects and long-range interactions
- Constraining New Forces in the Casimir Regime Using the Isoelectronic Technique
- Attractive Casimir Forces in a Closed Geometry
- Casimir force on a piston
- Exact Casimir interaction between eccentric cylinders
- Uses of zeta regularization in QFT with boundary conditions: a cosmo-topological Casimir effect
- Casimir piston for massless scalar fields in three dimensions
- Casimir Forces in a Piston Geometry at Zero and Finite Temperatures
- Casimir-like force arising from quantum fluctuations in a slow-moving dilute Bose-Einstein condensate
- Casimir Effect confronts Cosmological Constant
- Casimir force between eccentric cylinders
- A new renormalization approach to the Dirichlet Casimir effect for ϕ^4 theory in (1+1) dimensions
- Electromagnetic Casimir energy with extra dimensions
- A Direct Approach to the Electromagnetic Casimir Energy in a Rectangular Waveguide
- Dynamical Casimir effect with cylindrical waveguides
- Repulsive Casimir forces produced in rectangular cavities: Possible measurements and applications
- Casimir Densities for a Massive Fermionic Quantum Field in a Global Monopole Background with Spherical Boundary
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