Repulsive Casimir-Polder forces from cosmic strings
arXiv:1108.0195 · doi:10.1140/epjc/s10052-011-1765-4
Abstract
We investigate the Casimir-Polder force acting on a polarizable microparticle in the geometry of a straight cosmic string. In order to develop this analysis we evaluate the electromagnetic field Green tensor on the imaginary frequency axis. The expression for the Casimir-Polder force is derived in the general case of anisotropic polarizability. In dependence of the eigenvalues for the polarizability tensor and of the orientation of its principal axes, the Casimir-Polder force can be either repulsive or attractive. Moreover, there are situations where the force changes the sign with separation. We show that for an isotropic polarizability tensor the force is always repulsive. At large separations between the microparticle and the string, the force varies inversely as the fifth power of the distance. In the non-retarded regime, corresponding to separations smaller than the relevant transition wavelengths, the force decays as the inverse fourth power of the distance. In the case of anisotropic polarizability, the dependence of the Casimir-Polder potential on the orientation of the polarizability tensor principal axes also leads to the moment of force acting on the particle.
16 pages, 2 figures
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Cited by in corpus (14)
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- Spontaneous excitation of a static atom in a thermal bath in cosmic string spacetime
- Fermionic vacuum polarization in compactified cosmic string spacetime
- Vacuum polarization induced by a cosmic string in anti-de Sitter spacetime
- Entanglement harvesting in cosmic string spacetime
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- Casimir-Polder interaction between an atom and a conducting wall in cosmic string spacetime
- Casimir-Polder potential for a metallic cylinder in cosmic string spacetime
- Repulsive Casimir force in Bose-Einstein Condensate
- Fermionic vacuum polarization by a magnetic tube in the cosmic string spacetime
- Electromagnetic vacuum fluctuations around a cosmic string in de Sitter spacetime
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