The van der Waals and Casimir energy of anisotropic atomically thin metallic films
arXiv:1512.02084 · doi:10.1103/PhysRevB.92.205410
Abstract
We discuss the van der Waals (Casimir) free energies and pressures of thin metallic films, consisting from one to fifteen atomic layers, with regard to the anisotropy in their dielectric properties. Both free-standing films and films deposited on a dielectric substrate are considered. The computations are performed for a Au film and a sapphire substrate. According to our results, for free-standing Au films consisting of one and three atomic layers the respective relative error arising from the use of an isotropic (bulk) dielectric permittivity is equal to 73% and 37% for the van der Waals energy, and 70% and 35% for the pressure. We tabulate the energy and pressure van der Waals coefficients of thin Au films computed with account of their anisotropy. It is shown that the bulk permittivity of Au can be used for the films consisting of more than 30 atomic layers, i.e., more than approximately 7 nm thickness. The role of relativistic effects is also investigated and shown to be important even for the films consisting of two or three layers. The obtained results can find applications in the investigation of stability of thin films and development of novel nanoscale devices.
15 pages, 1 table, 3 figures
References in corpus (13)
- Novel constraints on light elementary particles and extra-dimensional physics from the Casimir effect
- Demonstration of the Casimir force between ferromagnetic surfaces of a Ni-coated sphere and a Ni-coated plate
- Retarded interactions in Graphene systems
- Van der Waals and Casimir interactions between two graphene sheets
- Origin of large thermal effect in the Casimir interaction between two graphene sheets
- Theory of reflectivity properties of graphene-coated material plates
- Comparison of hydrodynamic model of graphene with recent experiment on measuring the Casimir interaction
- Casimir free energy of metallic films: Discriminating between Drude and plasma model approaches
- Casimir Force between Atomically Thin Gold Films
- Vacuum fluctuation forces between ultra-thin films
- A study of the electromagnetic fluctuation induced forces on thin metallic films
- Role of vacuum fluctuation forces in thin metal film stability
- Special features of the thermal Casimir effect across a uniaxial anisotropic film
Cited by in corpus (10)
- Low-temperature behavior of the Casimir free energy and entropy of metallic films
- Optical chopper driven by the Casimir force
- Fluctuation-induced free energy of thin peptide films
- Nonequilibrium effects in the Casimir force between two similar metallic plates kept at different temperatures
- Characteristic properties of the Casimir free energy for metal films deposited on metallic plates
- Effect of increased stability of peptide-based coatings in the Casimir regime via nanoparticle doping
- Casimir pressure in peptide films on metallic substrates: Change of sign via graphene coating
- The Effect of Epsilon-Near-Zero (ENZ) Modes on the Casimir Interaction between Ultrathin Films
- Attractive and repulsive fluctuation-induced pressure in peptide films deposited on semiconductor substrates
- The Casimir free energy of peptide films on a silicon substrate: Impact of dielectric-to-metal transition in silicon and nanoparticles in peptide