BCS theory of superconductivity

GPTKB entity

Statements (60)
Predicate Object
gptkbp:instanceOf theory
gptkbp:appliesTo gptkb:low-temperature_superconductors
gptkbp:description electron pairing
gptkbp:developedBy gptkb:Robert_Schrieffer
gptkb:John_Bardeen
gptkb:Leon_Cooper
gptkbp:hasHistoricalSignificance gptkb:Nobel_Prize_in_Physics_1972
gptkbp:hasRelatedPatent gptkb:quantum_computing
particle accelerators
magnetic resonance imaging
https://www.w3.org/2000/01/rdf-schema#label BCS theory of superconductivity
gptkbp:involves Cooper pairs
gptkbp:isActiveIn theoretical studies
experimental physics
gptkbp:isAssociatedWith phase transition
gptkbp:isAvenueFor energy storage systems
gptkbp:isChallengedBy alternative theories
gptkbp:isCriticizedFor limited applicability
gptkbp:isDiscussedIn textbooks
conferences
scientific literature
scientific conferences
gptkbp:isExaminedBy peer-reviewed journals
quantum_field_theory
gptkbp:isExemplifiedBy theories of high-temperature superconductors
gptkbp:isExploredIn research papers
academic research
research institutions
numerical simulations
solid-state physics
graduate studies
gptkbp:isInfluencedBy modern physics
technological innovation
Bose-Einstein_condensation
Fermi-Dirac_statistics
gptkbp:isNamedAfter gptkb:Bardeen,_Cooper,_and_Schrieffer
gptkbp:isPartOf theoretical physics
theoretical frameworks
gptkbp:isRelatedTo condensed matter physics
superfluidity
superconducting materials
quantum_mechanics
quantum_tunneling
quantum_phenomena
London_equations
Meissner_effect
gptkbp:isSupportedBy experimental evidence
gptkbp:isTaughtIn university courses
gptkbp:isTrainedIn laboratory experiments
experiments
gptkbp:isUsedIn telecommunications
material science
gptkbp:keyIssues high-performance computing
technological advancements
advanced materials research
understanding superconductors
future technologies
gptkbp:notable_event energy gap
gptkbp:publishedIn 1957
gptkbp:winner superconductivity