BB84 protocol

GPTKB entity

Statements (52)
Predicate Object
gptkbp:instance_of gptkb:Quantum_Computing
gptkbp:based_on gptkb:quantum_entanglement
quantum superposition
gptkbp:developed_by gptkb:Gilles_Brassard
gptkb:Charles_Bennett
gptkbp:ensures secure communication
gptkbp:has_applications_in gptkb:crypt
gptkb:quantum_computing
secure communications
gptkbp:has_limitations noise interference
distance limitations
photon loss
gptkbp:has_variants gptkb:E91_protocol
BBM92 protocol
https://www.w3.org/2000/01/rdf-schema#label BB84 protocol
gptkbp:involves gptkb:Bob
gptkb:Eve
gptkb:Alice
gptkbp:is_compared_to classical key distribution methods
other quantum key distribution protocols
gptkbp:is_considered post-quantum cryptography
future quantum internet
gptkbp:is_considered_as gptkb:first_quantum_key_distribution_protocol
gptkbp:is_explored_in gptkb:academic_research
industry applications
gptkbp:is_implemented_in private companies
various research institutions
optical fibers
free space
gptkbp:is_part_of gptkb:quantum_cryptography
gptkbp:is_promoted_by quantum technology advocates
gptkbp:is_related_to gptkb:quantum_entanglement
quantum teleportation
quantum states
gptkbp:is_studied_in quantum information theory
quantum physics
gptkbp:is_supported_by quantum networks
quantum repeaters
gptkbp:is_tested_for laboratories
real-world scenarios
gptkbp:is_vulnerable_to man-in-the-middle attacks
eavesdropping
gptkbp:provides information-theoretic security
gptkbp:requires quantum channel
classical channel
gptkbp:uses gptkb:Quantum_Mechanics
gptkbp:utilizes polarization states
phase states
gptkbp:year_created gptkb:1984
gptkbp:bfsParent gptkb:Gilles_Brassard
gptkb:Quantum_Key_Distribution
gptkbp:bfsLayer 5