Fermionic Casimir effect for parallel plates in the presence of compact dimensions with applications to nanotubes
arXiv:0907.4942 · doi:10.1103/PhysRevD.80.105003
Abstract
We evaluate the Casimir energy and force for a massive fermionic field in the geometry of two parallel plates on background of Minkowski spacetime with an arbitrary number of toroidally compactified spatial dimensions. The bag boundary conditions are imposed on the plates and periodicity conditions with arbitrary phases are considered along the compact dimensions. The Casimir energy is decomposed into purely topological, single plate and interaction parts. With independence of the lengths of the compact dimensions and the phases in the periodicity conditions, the interaction part of the Casimir energy is always negative. In order to obtain the resulting force, the contributions from both sides of the plates must be taken into account. Then, the forces coming from the topological parts of the vacuum energy cancel out and only the interaction term contributes to the Casimir force. Applications of the general formulae to Kaluza-Klein type models and carbon nanotubes are given. In particular, we show that for finite length metallic nanotubes the Casimir forces acting on the tube edges are always attractive, whereas for semiconducting-type ones they are attractive for small lengths of the nanotube and repulsive for large lengths.
20 pages, 3 figures
References in corpus (32)
- The electronic properties of graphene
- Casimir interaction between a perfect conductor and graphene described by the Dirac model
- The generalized Abel-Plana formula with applications to Bessel functions and Casimir effect
- Lifshitz-type formulas for graphene and single-wall carbon nanotubes: van der Waals and Casimir interations
- Uses of zeta regularization in QFT with boundary conditions: a cosmo-topological Casimir effect
- Surface Casimir densities and induced cosmological constant in higher dimensional braneworlds
- Kaluza-Klein models as pistons
- The Casimir Force in Randall Sundrum Models
- Stress-energy tensor for a quantised bulk scalar field in the Randall-Sundrum brane model
- Casimir force for a scalar field in warped brane worlds
- The Casimir Force in Randall Sundrum Models with q+1 dimensions
- The Casimir force on a piston in the spacetime with extra compactified dimensions
- The perfect magnetic conductor (PMC) Casimir piston in d+1 dimensions
- Supersymmetry in carbon nanotubes in a transverse magnetic field
- Vacuum Energy, the Cosmological Constant and Compact Extra Dimensions: Constraints from Casimir Effect Experiments
- The Casimir effect in the nanoworld
- Casimir effect in de Sitter spacetime with compactified dimension
- Finite Temperature Casimir Effect in Kaluza-Klein Spacetime
- Finite temperature Casimir effect in spacetime with extra compactified dimensions
- Comment on: "The Casimir force on a piston in the spacetime with extra compactified dimensions" [Phys. Lett. B 668 (2008) 72]
- Van der Waals and Casimir interactions between atoms and carbon nanotubes
- The asymptotic behavior of Casimir force in the presence of compactified universal extra dimensions
- Fermionic Casimir effect in toroidally compactified de Sitter spacetime
- Quantum Hall effect in carbon nanotubes and curved graphene strips
- Casimir Effect in Spacetime with Extra Dimensions -- From Kaluza-Klein to Randall-Sundrum Models
- Functional approach to the fermionic Casimir effect
- Wightman function and vacuum densities in de Sitter spacetime with toroidally compactified dimensions
- Fermionic vacuum polarization by a composite topological defect in higher-dimensional space-time
- Cancellation of nonrenormalizable hypersurface divergences and the d-dimensional Casimir piston
- Casimir Effect on the brane
- Fermionic vacuum densities in higher-dimensional de Sitter spacetime
- Electromagnetic Casimir energy with extra dimensions
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- Induced fermionic current in toroidally compactified spacetimes with applications to cylindrical and toroidal nanotubes
- Quantum field theory on toroidal topology: algebraic structure and applications
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- Quantum fields in toroidal topology
- Strongly Interacting Fermions and Phases of the Casimir Effect
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- Fermionic current from topology and boundaries with applications to higher-dimensional models and nanophysics
- Topological Casimir effect in compactified cosmic string spacetime
- Fermionic Casimir effect in a field theory model with Lorentz symmetry violation
- Finite temperature Casimir effect for charged massless scalars in a magnetic field
- Exact Casimir-Polder potential between a particle and an ideal metal cylindrical shell and the proximity force approximation
- Casimir force in brane worlds: coinciding results from Green's and Zeta function approaches
- Lattice-fermionic Casimir effect and topological insulators
- Casimir effect for lattice fermions
- The Casimir effect with quantized charged spinor matter in background magnetic field
- Fermionic Casimir densities in a conical space with a circular boundary and magnetic flux
- Fermionic Casimir effect in Horava-Lifshitz theories
- Finite Temperature Casimir Effect for Massless Majorana Fermions in a Magnetic Field
- Rotating Casimir systems: magnetic-field-enhanced perpetual motion, possible realization in doped nanotubes, and laws of thermodynamics
- Finite temperature Casimir effect for scalar field with Robin boundary conditions in spacetime with extra dimensions
- Finite temperature Casimir effect of massive fermionic fields in the presence of compact dimensions
- Casimir effect for scalar current densities in topologically nontrivial spaces
- Thermal effects on the Casimir energy of a Lorentz-violating scalar in magnetic field
- Slab Bag Fermionic Casimir effect, Chiral Boundaries and Vector Boson - Majorana Fermion Pistons
- The Casimir effect for fermionic currents in conical rings with applications to graphene ribbons
- Casimir Energy For a Massive Dirac Field in One Spatial Dimension: A Direct Approach
- Casimir densities from coexisting vacua
- The Casimir effect for parallel plates involving massless Majorana fermions at finite temperature
- Casimir Energy for a Coupled Fermion-Kink System and its stability
- Fermionic Casimir effect with helix boundary condition
- Wightman function and the Casimir effect for a Robin sphere in a constant curvature space
- Electromagnetic Casimir piston in higher dimensional spacetimes
- Fermionic condensate and the mean energy-momentum tensor in the Fulling-Rindler vacuum
- On the Sign of Fermion-Mediated Interactions
- Fermionic condensate and the Casimir effect in cosmic string spacetime
- Ferminoic Casimir effect between spheres
- Casimir effect for fermion condensate in conical rings
- Casimir free energy for massive fermions: a comparative study of various approaches
- Some Developments of the Casimir Effect in -Cavity of -Dimensional Spacetime
- Bound of Casimir Effect by Holography
- The Casimir effect for parallel plates at finite temperature in the presence of one fractal extra compactified dimension
- Thermal Casimir effect for a Dirac field on flat space with a nontrivial circular boundary condition
- A generalized bag-like boundary condition for fields with arbitrary spin
- Massive fermion between two parallel chiral plates
- Fermionic vacuum stresses in models with toroidal compact dimensions
- Lattice Fermionic Casimir effect in a Slab Bag and Universality
- Chiral anomaly, induced current, and vacuum polarization tensor for a Dirac field in the presence of a defect
- Fermionic Casimir effect in the presence of compact dimension in field theory with Lorentz invariance violation
- Fermionic Casimir densities for a uniformly accelerating mirror in the Fulling-Rindler vacuum
- Equivalence of zeta function technique and Abel-Plana formula in regularizing the Casimir energy of hyper-rectangular cavities