Three dimensional Casimir piston for massive scalar fields
arXiv:0807.3613 · doi:10.1016/j.aop.2009.05.006
Abstract
We consider Casimir force acting on a three dimensional rectangular piston due to a massive scalar field subject to periodic, Dirichlet and Neumann boundary conditions. Exponential cut-off method is used to derive the Casimir energy in the interior region and the exterior region separated by the piston. It is shown that the divergent term of the Casimir force acting on the piston due to the interior region cancels with that due to the exterior region, thus render a finite well-defined Casimir force acting on the piston. Explicit expressions for the total Casimir force acting on the piston is derived, which show that the Casimir force is always attractive for all the different boundary conditions considered. As a function of a -- the distance from the piston to the opposite wall, it is found that the magnitude of the Casimir force behaves like when and decays exponentially when . Moreover, the magnitude of the Casimir force is always a decreasing function of a. On the other hand, passing from massless to massive, we find that the effect of the mass is insignificant when a is small, but the magnitude of the force is decreased for large a in the massive case.
22 pages, 8 figures
References in corpus (9)
- Zeta Functions and the Casimir Energy
- Casimir force on a piston
- Casimir interaction of two plates inside a cylinder
- Casimir piston for massless scalar fields in three dimensions
- Casimir Forces in a Piston Geometry at Zero and Finite Temperatures
- Casimir pistons with hybrid boundary conditions
- The perfect magnetic conductor (PMC) Casimir piston in d+1 dimensions
- Vacuum Stress and Closed Paths in Rectangles, Pistons, and Pistols
- Casimir interaction: pistons and cavity
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