Presentation 2013-11-22
An Experimental Study on Secure Optical Access System using Y-00 Cipher
Fumio FUTAMI, Osamu HIROTA,
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Abstract(in English) It was revealed that contents of communication were collected and stored by tapping optical signals from optical fiber cables. Therefore, the protection technology of such eavesdropping is now an urgent need to be developed. Recently Defense Advanced Research Projects Agency (DARPA) in the United States is focusing on the R&D of the cyber security. Last year, DARPA changed its policy and started the project of the physical cipher, "Quiness", for protecting eavesdropping the information in the fiber communication link. The goal of the project is rather high, the bit rate of 1 - 10 Gb/s and distance of 1,000 - 10,000 km. Our Institute has been conducting theoretically and experimentally the R&D of Y-00 quantum cipher, a physical cipher, to meet such performance. So far, the authors evaluated experimentally Y-00 performance of the security levels as well as the communication systems. The random cipher nature was experimentally measured as the security level evaluation. Y-00 transmission experiments were also demonstrated at the data rate over giga-bit per second in long distance optical fiber transmission lines and error-free performance of 2.5-Gb/s Y-00 transceiver over 160-km installed optical fiber over two months was demonstrated. In this report, the authors propose and demonstrate experimentally a secure multiple point optical access system by using Y-00 cipher.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Y-00 quantum cipher / Y-00 transceiver / secure optical access
Paper # OCS2013-89
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Conference Information
Committee OCS
Conference Date 2013/11/14(1days)
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Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) An Experimental Study on Secure Optical Access System using Y-00 Cipher
Sub Title (in English)
Keyword(1) Y-00 quantum cipher
Keyword(2) Y-00 transceiver
Keyword(3) secure optical access
1st Author's Name Fumio FUTAMI
1st Author's Affiliation Quantum ICT Research Institute, Tamagawa University()
2nd Author's Name Osamu HIROTA
2nd Author's Affiliation Quantum ICT Research Institute, Tamagawa University
Date 2013-11-22
Paper # OCS2013-89
Volume (vol) vol.113
Number (no) 305
Page pp.pp.-
#Pages 6
Date of Issue