Precision measurements of the gradient of the Casimir force between ultra clean metallic surfaces at larger separations
arXiv:1911.00703 · doi:10.1103/PhysRevA.100.052511
Abstract
We report precision measurements of the Casimir interaction at larger separation distances between the Au-coated surfaces of a sphere and a plate in ultrahigh vacuum using a much softer cantilever of the dynamic atomic force microscope-based setup and two-step cleaning procedure of the vacuum chamber and test body surfaces by means of UV light and Ar-ion bombardment. Compared to the previously performed experiment, two more measurement sets for the gradient of the Casimir force are provided which confirmed and slightly improved the results. Next, additional measurements have been performed with a factor of two larger oscillation amplitude of the cantilever. This allowed obtaining meaningful results at much larger separation distances. The comparison of the measurement data with theoretical predictions of the Lifshitz theory using the dissipative Drude model to describe the response of Au to the low-frequency electromagnetic field fluctuations shows that this theoretical approach is experimentally excluded over the distances from 250 to 1100nm (i.e., a major step forward has been made as compared to the previous work where it was excluded up to only 820nm). The theoretical approach using the dissipationless plasma model at low frequencies is shown to be consistent with the data over the entire measurement range from 250 to 1300nm. The possibilities to explain these puzzling results are discussed.
26 pages, 8 figures; accepted for publication in Phys. Rev. A; several typos have been corrected in the main text and in the list of references
References in corpus (21)
- Measurement of the Temperature Dependence of the Casimir-Polder Force
- Novel constraints on light elementary particles and extra-dimensional physics from the Casimir effect
- Control of the Casimir force by the modification of dielectric properties with light
- Optical properties of gold films and the Casimir force
- Demonstration of optically modulated dispersion forces
- Demonstration of the Casimir force between ferromagnetic surfaces of a Ni-coated sphere and a Ni-coated plate
- Conductivity of dielectric and thermal atom-wall interaction
- Experiment and theory in the Casimir effect
- Roughness correction to the Casimir force at short separations: Contact distance and extreme value statistics
- Significance of the Casimir force and surface roughness for actuation dynamics of MEMS
- Plasma vs Drude modelling of the Casimir force: beyond the proximity force approximation
- Kelvin probe force microscopy of metallic surfaces used in Casimir force measurements
- On the Casimir entropy for a ball in front of a plane
- Going beyond PFA: a precise formula for the sphere-plate Casimir force
- Low-temperature behavior of the Casimir free energy and entropy of metallic films
- Casimir entropy for magnetodielectrics
- Prospects for Searching Thermal Effects, Non-Newtonian Gravity and Axion-Like Particles: Cannex Test of the Quantum Vacuum
- How to confirm and exclude different models of material properties in the Casimir effect
- Casimir free energy and pressure for magnetic metal films
- Universal experimental test for the role of free charge carriers in thermal Casimir effect within a micrometer separation range
- Apparatus to probe the influence on the Casimir effect of the Mott-Anderson metal-insulator transition in doped semiconductors
Cited by in corpus (29)
- Measurement of the Casimir Force between 0.2 and 8 mum: Experimental Procedures and Comparison with Theory
- Casimir Puzzle and Casimir Conundrum: Discovery and Search for Resolution
- Demonstration of an Unusual Thermal Effect in the Casimir Force from Graphene
- Experimental and theoretical investigation of the thermal effect in the Casimir interaction from graphene
- An alternative response to the off-shell quantum fluctuations: A step forward in resolution of the Casimir puzzle
- Casimir and Casimir-Polder Forces in Graphene Systems: Quantum Field Theoretical Description and Thermodynamics
- Next generation design and prospects for CANNEX
- Probing the screening of the Casimir interaction with optical tweezers
- Constraining hidden photons via atomic force microscope measurements and the Plimpton-Lawton experiment
- Theory-experiment comparison for the Casimir force between metallic test bodies: A spatially nonlocal dielectric response
- Quantum field theoretical description of the Casimir effect between two real graphene sheets and thermodynamics
- Casimir Effect Invalidates the Drude Model for Transverse Electric Evanescent Waves
- The Nernst heat theorem for an atom interacting with graphene: Dirac model with nonzero energy gap and chemical potential
- Casimir effect for magnetic media: Spatially nonlocal response to the off-shell quantum fluctuation
- Current status of the problem of thermal Casimir force
- Dark Matter Axions, Non-Newtonian Gravity and Constraints on them from Recent Measurement of the Casimir Force in the Micrometer Separation Range
- Nonequilibrium effects in the Casimir force between two similar metallic plates kept at different temperatures
- Casimir entropy and nonlocal response functions to the off-shell quantum fluctuations
- Experimentum crucis for electromagnetic response of metals to evanescent waves and the Casimir puzzle
- The Casimir effect in graphene systems: Experiment and theory
- The Casimir force, causality and the Gurzhi model
- Testing Gravity and Predictions Beyond the Standard Model at Short Distances: The Casimir Effect
- Casimir Interaction Between a Plane and a Sphere: Correction to the Proximity-Force Approximation at Intermediate Temperatures
- Casimir effect between spherical objects: proximity-force approximation and beyond using plane waves
- Casimir-Lifshitz interaction between bodies integrated in a microelectromechanical/nanoelectromechanical quantum damped oscillator
- Role of the Casimir force in the capacitive radio-frequency microelectromechanical switches
- Recent solution to the Casimir puzzle awaits its experimental confirmation
- Constraining Axion-to-Nucleon interaction via ultranarrow linewidth in the Casimir-less regime
- Proposal for constraining non-Newtonian gravity at nm range via criticality enhanced measurement of resonance frequency shift