Probing the screening of the Casimir interaction with optical tweezers
arXiv:2104.00157 · doi:10.1103/PhysRevResearch.3.033037
Abstract
We measure the colloidal interaction between two silica microspheres in aqueous solution in the distance range from m to m with the help of optical tweezers. When employing a sample with a low salt concentration, the resulting interaction is dominated by the repulsive double-layer interaction which is fully characterized. The double-layer interaction is suppressed when adding M of salt to our sample, thus leading to a purely attractive Casimir signal. When analyzing the experimental data for the potential energy and force, we find good agreement with theoretical results based on the scattering approach. At the distance range probed experimentally, the interaction arises mainly from the unscreened transverse magnetic contribution in the zero-frequency limit, with nonzero Matsubara frequencies providing a negligible contribution. In contrast, such unscreened contribution is not included by the standard theoretical model of the Casimir interaction in electrolyte solutions, in which the zero-frequency term is treated separately as an electrostatic fluctuational effect. As a consequence, the resulting attraction is too weak in this standard model, by approximately one order of magnitude, to explain the experimental data. Overall, our experimental results shed light on the nature of the thermal zero-frequency contribution and indicate that the Casimir attraction across polar liquids has a longer range than previously predicted.
19 pages, 9 figures; updated references; added a detailed discussion of the subtraction procedure leading to the interaction potential
References in corpus (24)
- Casimir forces between arbitrary compact objects
- Calibration of optical tweezers with positional detection in the back-focal-plane
- The Casimir effect within scattering theory
- Halving the Casimir force with conductive oxides
- The Casimir force and the quantum theory of lossy optical cavities
- Influence of random roughness on the Casimir force at small separations
- Casimir energy between a plane and a sphere in electromagnetic vacuum
- The Casimir force between rough metallic plates
- Fluctuation induced quantum interactions between compact objects and a plane mirror
- Precision measurement of the Casimir-Lifshitz force in a fluid
- Roughness correction to the Casimir force : Beyond the Proximity Force Approximation
- Statistics of Particle Trajectories at Short Time Intervals Reveal fN-Scale Colloidal Forces
- Measurements of the Casimir-Lifshitz force in fluids: the effect of electrostatic forces and Debye screening
- Colloidal Electrostatic Interactions Near a Conducting Surface
- Measurement of the Casimir Force between 0.2 and 8 mum: Experimental Procedures and Comparison with Theory
- Plasma vs Drude modelling of the Casimir force: beyond the proximity force approximation
- Harmonic Oscillator in Heat Bath: Exact simulation of time-lapse-recorded data, exact analytical benchmark statistics
- Precision measurements of the gradient of the Casimir force between ultra clean metallic surfaces at larger separations
- Roughness correction to the Casimir force beyond perturbation theory
- Recent measurements of the Casimir force: Comparison between experiment and theory
- Plane-wave approach to the exact van der Waals interaction between colloid particles
- Thermally limited force microscopy on optically trapped single metallic nanoparticles
- Relaxing constraints on data acquisition and position detection for trap stiffness calibration in optical tweezers
- A New Tracking Algorithm for Multiple Colloidal Particles Close to Contact
Cited by in corpus (5)
- Universal Casimir interaction between two dielectric spheres in salted water
- Universal Casimir attraction between filaments at the cell scale
- Universal Casimir interactions in the sphere-sphere geometry
- Casimir effect between spherical objects: proximity-force approximation and beyond using plane waves
- Casimir effect with dielectric matter in salted water and implications at the cell scale