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Why the Casimir Force for Magnetic Metals Computed by the Lifshitz Theory Using the Drude Model Disagrees with the Measurement Data
G. L. Klimchitskaya, C. C. Korikov, V. M. Mostepanenko
We consider the Casimir force in configurations with magnetic metal plates and analyze the reasons why the predictions of the Lifshitz theory using the dielectric permittivity of t…
Recent solution to the Casimir puzzle awaits its experimental confirmation
V. M. Mostepanenko, G. L. Klimchitskaya
The plausible resolution of the Casimir puzzle implying that the dissipative Drude model is not applicable in the area of transverse electric evanescent waves is discussed. Calcula…
Impact of surface roughness on the stability of nanoelectromechanical pressure sensors in the Casimir regime
G. L. Klimchitskaya, A. S. Korotkov, V. V. Loboda +1
The stability of nanoelectromechanical pressure sensors working in the Casimir regime is considered with account of surface roughness on both the sensor membrane and the ground pla…
Nonequilibrium Casimir pressure for two graphene-coated plates: Quantum field theoretical approach
G. L. Klimchitskaya, C. C. Korikov, V. M. Mostepanenko
We consider the nonequilibrium Casimir pressure in the system of two parallel graphene-coated plates one of which is either warmer or cooler than the environment. The electromagnet…
A few remarks concerning application of the Lifshitz theory to calculation of the Casimir-Polder interaction
V. M. Mostepanenko
The Lifshitz theory provides a semiclassical description of the Casimir-Polder atom-plate interaction, where the electromagnetic field is quantized whereas the material of the plat…
Polarization tensor in spacetime of three dimensions and quantum field theoretical description of the nonequilibrium Casimir force in graphene systems
G. L. Klimchitskaya, C. C. Korikov, V. M. Mostepanenko
The polarization tensor of graphene derived in the framework of the Dirac model using the methods of thermal quantum field theory in (2+1) dimensions is recast in a mathematically…