554 citations
- St Petersburg UniversityRU141 papers
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- University of TurkuFI33 papers
- Max Planck Institute for Radio AstronomyDE32 papers
- Russian Academy of SciencesRU30 papers
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30 papers · 1 filter
Nonequilibrium Casimir-Polder Force between Nanoparticles and Graphene-Coated Silica Plate: Combined Effect of the Chemical Potential and Mass Gap
Galina L. Klimchitskaya, Constantine C. Korikov, Vladimir M. Mostepanenko
The Casimir-Polder force between spherical nanoparticles and a graphene-coated silica plate is investigated in situations out of thermal equilibrium, i.e., with broken time-reversa…
The Casimir Force between Two Graphene Sheets: 2D Fresnel Reflection Coefficients, Contributions of Different Polarizations, and the Role of Evanescent Waves
Galina L. Klimchitskaya, Vladimir M. Mostepanenko
We consider the Casimir pressure between two graphene sheets and contributions to it determined by evanescent and propagating waves with different polarizations. For this purpose,…
Casimir Effect Invalidates the Drude Model for Transverse Electric Evanescent Waves
Galina L. Klimchitskaya, Vladimir M. Mostepanenko
We consider the Casimir pressure between two metallic plates and calculate the four contributions to it determined by the propagating and evanescent waves and by the transverse mag…
Large-Separation Behavior of the Casimir-Polder Force from Real Graphene Sheet Deposited on a Dielectric Substrate
Galina L. Klimchitskaya, Vladimir M. Mostepanenko
The Casimir-Polder force between atoms or nanoparticles and graphene-coated dielectric substrates is investigated in the region of large separations. Graphene coating with any valu…
Casimir-Polder Force on Atoms or Nanoparticles from the Gapped and Doped Graphene: Asymptotic Behavior at Large Separations
Galina L. Klimchitskaya, Vladimir M. Mostepanenko
The Casimir-Polder force acting on atoms and nanoparticles spaced at large separations from real graphene sheet possessing some energy gap and chemical potential is investigated in…
Quantum field theoretical framework for the electromagnetic response of graphene and dispersion relations with implications to the Casimir effect
G. L. Klimchitskaya, V. M. Mostepanenko
The spatially nonlocal response functions of graphene obtained on the basis of first principles of quantum field theory using the polarization tensor are considered in the areas of…