Title :
Two-Dimensional Optical Code-Division Modulation With Quantum-Noise Aided Encryption for Applications in Key Distribution
Author :
Ozharar, Sarper ; Reilly, Daniel R. ; Wang, Shawn X. ; Kanter, Gregory S. ; Kumar, Prem
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Northwestern Univ., Evanston, IL, USA
fDate :
7/15/2011 12:00:00 AM
Abstract :
We propose and demonstrate an advanced optical modulation format that makes use of both spectral and temporal phase encodings (2-D) for applications requiring exceptional security. The method combines modulation techniques used in direct-sequence spread-spectrum coding, spectral-phase encoding, and M-ary phase-shift keying with codes generated using cryptographically secure pseudorandom number generators. The wideband transmission signal is very difficult for an eavesdropper to record or analyze. Signal-to-noise ratio limitations imposed by quantum effects enhance the security further. The properties of the transmitted signal make it especially useful for physics-based key expansion systems. We have successfully used this setup to transmit encrypted 155 Mb/s data over 70 km of fiber with a BER value of 4E-5.
Keywords :
codes; cryptography; optical modulation; spread spectrum communication; cryptographically secure pseudorandom number generators; direct sequence spread spectrum coding; eavesdropper; key distribution; quantum noise aided encryption; spectral phase encodings; temporal phase encodings; two dimensional optical code division modulation; wideband transmission signal; Encoding; Encryption; Laser mode locking; Phase modulation; Receivers; Key Distribution; M-ary phase-shift keying; secure communication; spectral-phase encryption;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2011.2156760