Title :
Demonstration of an All-Optical OCDMA Encryption and Decryption System With Variable Two-Code Keying
Author :
Kostinski, Natalie ; Kravtsov, Konstantin ; Prucnal, PAul R.
Author_Institution :
Dept. of Electr. Eng., Princeton Univ., Princeton, NJ
Abstract :
We demonstrate the first all-optical optical code-division multiple-access (OCDMA) encryption and decryption system with variable two-code keying. The nonlinear optical loop mirror (NOLM)-based exclusive or (xor) employed in encryption utilizes the shortest length silica-based nonlinear fiber element to date, enabling a compact architecture. Fiber Bragg grating arrays create wavelength-hopping time-spreading OCDMA codes from broadband pulses at output ports of the xor resulting in variable two-code keying, a code-switching modulation format characterized by a random alternation in bit representation and immunity to differential analysis unlike fixed two-code keying. The terahertz optical asymmetric demultiplexer employed in decryption shows mutual compatibility of nonlinear fiber-based and semiconductor optical amplifier-based NOLM configurations. Our architecture can potentially perform one-time pad encryption and decryption for unconditional security.
Keywords :
Bragg gratings; code division multiple access; code division multiplexing; cryptography; demultiplexing equipment; differential phase shift keying; mirrors; optical arrays; optical fibre communication; optical logic; optical modulation; semiconductor optical amplifiers; all-optical OCDMA decryption system; all-optical OCDMA encryption system; code-switching modulation; fiber Bragg grating arrays; nonlinear fiber-based NOLM configurations; nonlinear optical loop mirror-based exclusive OR; optical code-division multiple-access; optical logic; semiconductor optical amplifier-based NOLM configurations; terahertz optical asymmetric demultiplexer; variable two-code keying; wavelength-hopping time-spreading OCDMA codes; Heavily doped fiber (HDF); optical code- division multiple-access (OCDMA); optical logic; security; variable two-code keying;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2008.2006063