Finite temperature Casimir effect for graphene
arXiv:1102.1757 · doi:10.1103/PhysRevB.84.035446
Abstract
We adopt the Dirac model for quasiparticles in graphene and calculate the finite temperature Casimir interaction between a suspended graphene layer and a parallel conducting surface. We find that at high temperature the Casimir interaction in such system is just one half of that for two ideal conductors separated by the same distance. In this limit single graphene layer behaves exactly as a Drude metal. In particular, the contribution of the TE mode is suppressed, while one of the TM mode saturates the ideal metal value. Behaviour of the Casimir interaction for intermediate temperatures and separations accessible for an experiment is studied in some detail. We also find an interesting interplay between two fundamental constants of graphene physics: the fine structure constant and the Fermi velocity.
13 pages, 2 figures, to appear in Physical Review B
References in corpus (17)
- The electronic properties of graphene
- Universal Dynamic Conductivity and Quantized Visible Opacity of Suspended Graphene
- Universal dynamical conductance in graphite
- Observation of the thermal Casimir force
- On the universal AC optical background in graphene
- Dynamical polarization, screening, and plasmons in gapped graphene
- New asymptotic behaviour of the surface-atom force out of thermal equilibrium
- Effect of the Casimir-Polder force on the collective oscillations of a trapped Bose-Einstein condensate
- Casimir interaction of dielectric gratings
- Lifshitz-type formulas for graphene and single-wall carbon nanotubes: van der Waals and Casimir interations
- Thermal corrections to the Casimir effect
- Thermal Lifshitz Force between Atom and Conductor with Small Density of Carriers
- Casimir interaction of two plates inside a cylinder
- Contribution of drifting carriers to the Casimir-Lifshitz and Casimir-Polder interactions with semiconductor materials
- Application of the Lifshitz theory to poor conductors
- Modal Approach to Casimir Forces in Periodic Structures
- Casimir interaction: pistons and cavity
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- A Materials Perspective on Casimir and van der Waals Interactions
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- Adhesion mechanics of graphene membranes
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- Van der Waals and Casimir interactions between two graphene sheets
- Theory of the Casimir interaction for graphene-coated substrates using the polarization tensor and comparison with experiment
- Enhanced Casimir effect for doped graphene
- Two approaches for describing the Casimir interaction with graphene: density-density correlation function versus polarization tensor
- Band gap in graphene induced by vacuum fluctuations
- Quantum field theory on toroidal topology: algebraic structure and applications
- Quantized Casimir Force
- Casimir Puzzle and Casimir Conundrum: Discovery and Search for Resolution
- Observability of thermal effects in the Casimir interaction from graphene-coated substrates
- Creation of quasiparticles in graphene by a time-dependent electric field
- Origin of large thermal effect in the Casimir interaction between two graphene sheets
- Demonstration of an Unusual Thermal Effect in the Casimir Force from Graphene
- Quantum Field Theory in Graphene
- Temperature dependent graphene suspension due to thermal Casimir interaction
- Quantum friction between graphene sheets
- Tuning quantum fluctuations with an external magnetic field: Casimir-Polder interaction between an atom and a graphene sheet
- Emending thermal dispersion interactions of Li, Na, K and Rb alkali metal-atoms with graphene in the Dirac model
- Tailoring the thermal Casimir force with graphene
- The quest for Casimir repulsion between Chern-Simons surfaces
- Influence of chemical potential on the Casimir-Polder interaction between an atom and gapped graphene or graphene-coated substrate
- Conductivity of pure graphene: Theoretical approach using the polarization tensor
- Experimental and theoretical investigation of the thermal effect in the Casimir interaction from graphene
- Persistent current induced by vacuum fluctuations in a quantum ring
- Effects of Spatial Dispersion on the Casimir Force between Graphene Sheets
- Shielding vacuum fluctuations with graphene
- Conductivity of graphene in the framework of Dirac model: Interplay between nonzero mass gap and chemical potential
- Thermal Casimir and Casimir-Polder interactions in parallel 2D Dirac materials
- Fermionic current from topology and boundaries with applications to higher-dimensional models and nanophysics
- Signatures of Complex Optical Response in Casimir Interactions of Type I and II Weyl Semimetals
- The Casimir effect in topological matter
- Impact of graphene coating on the atom-plate interaction
- An alternative response to the off-shell quantum fluctuations: A step forward in resolution of the Casimir puzzle
- How to observe the giant thermal effect in the Casimir force for graphene systems
- Thermal effect in the Casimir force for graphene and graphene-coated substrates: Impact of nonzero mass gap and chemical potential
- Theory of reflectivity properties of graphene-coated material plates
- Casimir and Casimir-Polder Forces in Graphene Systems: Quantum Field Theoretical Description and Thermodynamics
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- Comparison of hydrodynamic model of graphene with recent experiment on measuring the Casimir interaction
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- Kramers-Kronig relations and causality conditions for graphene in the framework of the Dirac model
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- Lattice-fermionic Casimir effect and topological insulators
- Quantum electrodynamic approach to the conductivity of gapped graphene
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- Electromagnetic Waves in a Model with Chern-Simons Potential
- Classical limit of the Casimir interaction for thin films with applications to graphene
- Critical surface band gap of repulsive Casimir interaction between three dimensional topological insulators at finite temperature
- Casimir free energy of dielectric films: Classical limit, low-temperature behavior and control
- Influence of electric current on the Casimir forces between graphene sheets
- Theory-experiment comparison for the Casimir force between metallic test bodies: A spatially nonlocal dielectric response
- Surface plasmons for doped graphene
- Impact of chemical potential on the reflectance of graphene in the infrared and microwave domains
- Charge-Parity violating effects in Casimir-Polder potentials
- Nernst heat theorem for the thermal Casimir interaction between two graphene sheets
- Entanglement harvesting in double-layer graphene by vacuum fluctuations in a microcavity
- Casimir effects in systems containing 2D layers, like graphene and 2D electron gases
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- How to confirm and exclude different models of material properties in the Casimir effect
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- The Nernst heat theorem for an atom interacting with graphene: Dirac model with nonzero energy gap and chemical potential
- Low-temperature behavior of the Casimir-Polder free energy and entropy for an atom interacting with graphene
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- Optical properties of dielectric plates coated with gapped graphene
- Current status of the problem of thermal Casimir force
- The van der Waals and Casimir energy of anisotropic atomically thin metallic films
- The Casimir effect for a stack of conductive planes
- Casimir interaction of two dielectric half spaces with Chern-Simons boundary layers
- Quantum field theory of the Casimir force for graphene
- Anisotropy enhancement of the Casimir-Polder force between a nanoparticle and graphene
- Charge density and conductivity of disordered Berry-Mondragon graphene nanoribbons
- Quantum field theoretical framework for the electromagnetic response of graphene and dispersion relations with implications to the Casimir effect
- Casimir-Polder attraction and repulsion between nanoparticles and graphene in out-of-thermal-equilibrium conditions
- Dispersion coefficients for the interactions of the alkali and alkaline-earth ions and inert gas atoms with a graphene layer
- Bulk contributions to the Casimir interaction of Dirac materials
- The low temperature behavior the Casimir-Polder energy for conductive plane
- Surface plasmon on graphene at finite
- The Casimir effect in graphene systems: Experiment and theory
- Thermal Casimir effect with general boundary conditions
- Controlled ripple texturing of suspended graphene membrane due to coupling with ultracold atoms
- Phonon-polaritons in Bose-Einstein condensates induced by Casimir-Polder interaction with graphene
- The low-temperature expansion of the Casimir-Polder free energy of an atom with graphene
- Graphene Cantilever Under Casimir Force
- Quantum friction between oscillating crystal slabs: Graphene monolayers on dielectric substrates
- Casimir pressure in peptide films on metallic substrates: Change of sign via graphene coating
- Using graphene conductors to enhance the functionality of atom-chips
- Graphene may help to solve the Casimir conundrum in indium tin oxide systems
- Impact of Mass-Gap on the Dispersion Interaction of Nanoparticles with Graphene out of Thermal Equilibrium
- Nonequilibrium Casimir-Polder Interaction Between Nanoparticles and Substrates Coated with Gapped Graphene
- The Casimir effect for stack of graphenes
- The Casimir Force between Two Graphene Sheets: 2D Fresnel Reflection Coefficients, Contributions of Different Polarizations, and the Role of Evanescent Waves
- On the convergence of the polarization tensor in space-time of three dimensions
- Numerical computation of dynamical Schwinger-like pair production in graphene
- Stability of Suspended Graphene under Casimir Force
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- Impurities in graphene and their influence on the Casimir interaction
- Casimir-Lifshitz force for moving graphene
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- On the (im)possibility of Casimir repulsion between Chern-Simons surfaces
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- Comment on "Electric conductivity of graphene: Kubo model versus a nonlocal quantum field theory model (arXiv:2403.02279v3)"
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