Publication | Closed Access
Bidirectional private key exchange using delay-coupled semiconductor lasers
44
Citations
21
References
2016
Year
EngineeringInformation SecurityHardware SecurityPublic Key AlgorithmPost-quantum CryptographySemiconductor LasersSynchronization ProtocolIdentical Chaos SynchronizationOptical CommunicationKey Exchange CryptosystemQuantum Key DistributionPhotonicsQuantum CryptographyPhysicsData SecurityCryptographyApplied PhysicsDelay-coupled Semiconductor LasersOptoelectronics
We experimentally demonstrate a key exchange cryptosystem based on the phenomenon of identical chaos synchronization. In our protocol, the private key is symmetrically generated by the two communicating partners. It is built up from the synchronized bits occurring between two current-modulated bidirectionally coupled semiconductor lasers with additional self-feedback. We analyze the security of the exchanged key and discuss the amplification of its privacy. We demonstrate private key generation rates up to 11 Mbit/s over a public channel.
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