KnowraMeissner effectLinked fromLinked fromThe 14 pages that link to Meissner effect, each with the reason it gives.All 14Broader topic 2Related 11Compared with 1SuperconductivityRelated: This magnetic response distinguishes superconductivity from merely perfect electrical conductivity.BCS theoryRelated: BCS theory accounts for this defining macroscopic electromagnetic response.Magnetic levitationRelated: Field exclusion underlies levitation of superconductors over magnets.Ginzburg–Landau theoryRelated: The theory accounts for field screening through its coupled order-parameter and electromagnetic equations.Type-II superconductorRelated: Type-II materials expel weak fields before admitting vortices above their lower critical field.SuperconductorRelated: This magnetic response distinguishes superconductivity from merely perfect electrical conductivity.Abrikosov vortexCompared with: Vortex penetration distinguishes type-II behavior from complete field expulsion.Heike Kamerlingh OnnesBroader topic: Discovered after Onnes, it showed that superconductivity is more than merely zero electrical resistance.NiobiumRelated: This defining superconducting behavior helps explain niobium’s use in magnets and cavities.Color superconductivityRelated: Color-superconducting condensates similarly screen some color gauge fields through effective masses.Type-I superconductorRelated: It is the defining magnetic response of a type-I superconductor below its critical field.K. Alex MüllerRelated: It is a defining magnetic signature of the superconducting state Müller helped uncover in ceramics.Georg BednorzRelated: Magnetic-field expulsion distinguishes superconductivity from merely having low electrical resistance.Methods in superconductivityBroader topic: It distinguishes superconductivity from merely observing zero electrical resistance.