Casimir effect

E590880

The Casimir effect is a quantum phenomenon in which vacuum fluctuations of the electromagnetic field produce a measurable force between closely spaced uncharged conducting surfaces.

All labels observed (4)

Label Occurrences
Casimir effect canonical 1
Casimir–Polder effect 1
dynamical Casimir effect 1

How this entity was disambiguated

Statements (48)

Predicate Object
instanceOf physical effect ⓘ
quantum phenomenon ⓘ
vacuum fluctuation effect ⓘ
causedBy vacuum fluctuations of the electromagnetic field ⓘ
zero-point energy ⓘ
dependsOn boundary conditions of the electromagnetic field ⓘ
geometry of the conductors ⓘ
material properties of the surfaces ⓘ
plate separation ⓘ
describedBy Hendrik B. G. Casimir ⓘ
experimentalConfirmation precision measurements with parallel plates ⓘ
sphere–plate geometry experiments ⓘ
field quantum electrodynamics ⓘ
quantum field theory ⓘ
theoretical physics ⓘ
firstMeasuredBy Marcus Sparnaay ⓘ
forceType attractive force ⓘ
governingConstant Boltzmann constant in thermal corrections ⓘ
Planck constant ⓘ
speed of light ⓘ
hasFormula F = -\frac{\pi^2 \hbar c}{240 a^4} for ideal parallel plates ⓘ
hasInterpretation change in vacuum energy due to boundary conditions ⓘ
radiation pressure imbalance of vacuum modes ⓘ
hasVariant Casimir–Polder effect ⓘ
linked to: Casimir effect

dynamical Casimir effect ⓘ
linked to: Casimir effect

thermal Casimir effect ⓘ
linked to: Casimir effect
limitCondition ideal perfectly conducting plates ⓘ
zero temperature ⓘ
manifestsAs force between closely spaced uncharged conducting surfaces ⓘ
mathematicalTool mode summation ⓘ
path integral methods ⓘ
zeta function regularization ⓘ
namedAfter Hendrik B. G. Casimir ⓘ
relatedTo Lifshitz theory ⓘ
van der Waals forces ⓘ
zero-point energy of the vacuum ⓘ
relevantTo fundamental tests of quantum field theory ⓘ
microelectromechanical systems ⓘ
nanotechnology ⓘ
precision force measurements ⓘ
scale micrometer scale ⓘ
nanometer scale ⓘ
signCanBe repulsive under certain material and geometric conditions ⓘ
temperatureDependence force magnitude changes with temperature ⓘ
typicalConfiguration two parallel conducting plates ⓘ
usedIn constraints on hypothetical new forces at short ranges ⓘ
tests of modifications of gravity at submillimeter scales ⓘ
yearProposed 1948 ⓘ

How these facts were elicited

Referenced by (4)

Full triples — surface form annotated when it differs from this entity's canonical label.

quantum mechanics → predicts → Casimir effect ⓘ
Casimir effect → hasVariant → thermal Casimir effect ⓘ
linked to: Casimir effect
Casimir effect → hasVariant → dynamical Casimir effect ⓘ
linked to: Casimir effect
Casimir effect → hasVariant → Casimir–Polder effect ⓘ
linked to: Casimir effect