We present here measurements of the Casimir force gradient in the 60–300 nm range using a commercial Atomic Force Microscope operating in Ultra High Vacuum (UHV). The measurements were carried out in the sphere-plate geometry between a Au sphere and plates consisting of two different classes of material, that is a metal (Au) and a semimetal (HOPG). The variation in the optical properties of the materials produces clearly observed differences in the Casimir force as predicted by calculations based on the quantum theory of optical networks and the Lifshitz theory
New experiments are discussed on measuring the Casimir force between metallic surfaces. One of them ...
We present detailed measurements of the Casimir-Lifshitz force between two gold surfaces, performed ...
The Casimir effect originates from the boundary effects on the quantum vacuum. The boundary modifies...
© 2019 American Physical Society. We report precision measurements of the Casimir interaction at lar...
© 2019 American Physical Society. We performed measurements of the gradient of the Casimir force bet...
We study the influence of finite conductivity of metals on the Casimir effect. We put the emphasis ...
The famous Casimir effect was first predicted by Hendrik Casimir in 1948. Two conducting parallel el...
We present results on the determination of the differential Casimir force between an Au-coated sapph...
We compare theory and experiment in the Casimir force measurement between gold surfaces performed wi...
We have performed measurements of the Casimir force between a metallic plate and a transparent spher...
We have analysed available optical data for Au in the mid-infrared range which is important for a pr...
We present a Casimir force setup based on an all-optical ferrule-top sensor. We demonstrate that the...
The transition of van der Waals to Casimir forces between macroscopic gold surfaces is investigated ...
We report an improved dynamic determination of the Casimir pressure P-expt between two plane plates ...
The first precise measurement of the Casimir force between dissimilar metals is reported. The attrac...
New experiments are discussed on measuring the Casimir force between metallic surfaces. One of them ...
We present detailed measurements of the Casimir-Lifshitz force between two gold surfaces, performed ...
The Casimir effect originates from the boundary effects on the quantum vacuum. The boundary modifies...
© 2019 American Physical Society. We report precision measurements of the Casimir interaction at lar...
© 2019 American Physical Society. We performed measurements of the gradient of the Casimir force bet...
We study the influence of finite conductivity of metals on the Casimir effect. We put the emphasis ...
The famous Casimir effect was first predicted by Hendrik Casimir in 1948. Two conducting parallel el...
We present results on the determination of the differential Casimir force between an Au-coated sapph...
We compare theory and experiment in the Casimir force measurement between gold surfaces performed wi...
We have performed measurements of the Casimir force between a metallic plate and a transparent spher...
We have analysed available optical data for Au in the mid-infrared range which is important for a pr...
We present a Casimir force setup based on an all-optical ferrule-top sensor. We demonstrate that the...
The transition of van der Waals to Casimir forces between macroscopic gold surfaces is investigated ...
We report an improved dynamic determination of the Casimir pressure P-expt between two plane plates ...
The first precise measurement of the Casimir force between dissimilar metals is reported. The attrac...
New experiments are discussed on measuring the Casimir force between metallic surfaces. One of them ...
We present detailed measurements of the Casimir-Lifshitz force between two gold surfaces, performed ...
The Casimir effect originates from the boundary effects on the quantum vacuum. The boundary modifies...