On Casimir and Helmholtz Fluctuation-Induced Forces in Micro- and Nano-Systems: Survey of Some Basic Results

Author:

Dantchev Daniel12ORCID

Affiliation:

1. Institute of Mechanics, Bulgarian Academy of Sciences, Academic Georgy Bonchev St., Building 4, 1113 Sofia, Bulgaria

2. Max-Planck-Institut für Intelligente Systeme, Heisenbergstrasse 3, D-70569 Stuttgart, Germany

Abstract

Fluctuations are omnipresent; they exist in any matter, due either to its quantum nature or to its nonzero temperature. In the current review, we briefly cover the quantum electrodynamic Casimir (QED) force as well as the critical Casimir (CC) and Helmholtz (HF) forces. In the QED case, the medium is usually a vacuum and the massless excitations are photons, while in the CC and HF cases the medium is usually a critical or correlated fluid and the fluctuations of the order parameter are the cause of the force between the macroscopic or mesoscopic bodies immersed in it. We discuss the importance of the presented results for nanotechnology, especially for devising and assembling micro- or nano-scale systems. Several important problems for nanotechnology following from the currently available experimental findings are spelled out, and possible strategies for overcoming them are sketched. Regarding the example of HF, we explicitly demonstrate that when a given integral quantity characterizing the fluid is conserved, it has an essential influence on the behavior of the corresponding fluctuation-induced force.

Funder

Bulgarian Science Fund

Publisher

MDPI AG

Reference207 articles.

1. On the Attraction between Two Perfectly Conducting Plates;Casimir;Proc. K. Ned. Akad. Wet.,1948

2. Radiation pressure from the vacuum: Physical interpretation of the Casimir force;Milonni;Phys. Rev. A,1988

3. The Casimir effect;Plunien;Phys. Rep.,1986

4. The Casimir effect and its applications;Mostepanenko;Sov. Phys. Uspekhi,1988

5. Levin, F.S., and Micha, D.A. (1993). Long-Range Casimir Forces, Springer.

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