English

Present status of controversies regarding the thermal Casimir force

Quantum Physics 2009-11-11 v1 Other Condensed Matter High Energy Physics - Theory

Abstract

It is well known that, beginning in 2000, the behavior of the thermal correction to the Casimir force between real metals has been hotly debated. As was shown by several research groups, the Lifshitz theory, which provides the theoretical foundation for the calculation of both the van der Waals and Casimir forces, leads to different results depending on the model of metal conductivity used. To resolve these controversies, the theoretical considerations based on the principles of thermodynamics and new experimental tests were invoked. We analyze the present status of the problem (in particular, the advantages and disadvantages of the approaches based on the surface impedance and on the Drude model dielectric function) using rigorous analytical calculations of the entropy of a fluctuating field. We also discuss the results of a new precise experiment on the determination of the Casimir pressure between two parallel plates by means of a micromechanical torsional oscillator.

Keywords

Cite

@article{arxiv.quant-ph/0512134,
  title  = {Present status of controversies regarding the thermal Casimir force},
  author = {V. M. Mostepanenko and V. B. Bezerra and R. S. Decca and B. Geyer and E. Fischbach and G. L. Klimchitskaya and D. E. Krause and D. Lopez and C. Romero},
  journal= {arXiv preprint arXiv:quant-ph/0512134},
  year   = {2009}
}

Comments

14 pages, 1 figure, iopart.cls is used, to appear in J. Phys. A (special issue: Proceedings of QFEXT05, Barcelona, Sept. 5-9, 2005)