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of 16
pro vyhledávání: '"Barry Hershman"'
Publikováno v:
IEEE Communications Letters. 12:459-461
Detection-time-bin-shift (DTBS) is a scheme that uses time division multiplexing of a single photon detector between two photon bases in a quantum key distribution (QKD) system. This scheme can simplify the structure of a QKD system, reduce its cost
Publikováno v:
Video Surveillance
Security is an increasingly growing concern for network communications and video is an emerging segment of network traffic that uses large amounts of bandwidth. Streaming video, vs. downloading a video for later viewing, requires a continuous, high d
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8e3dab8147261ad8889304c31a3a4ea7
http://www.intechopen.com/articles/show/title/an-application-of-quantum-networks-for-secure-video-surveillance
http://www.intechopen.com/articles/show/title/an-application-of-quantum-networks-for-secure-video-surveillance
Publikováno v:
Quantum Communications and Quantum Imaging VI.
Detection-time-bin-shift (DTBS) is a scheme that projects the measurement bases or measured photon values into detection time-bins and then time division multiplexes a single photon detector in a quantum key distribution (QKD) system. This scheme can
Publikováno v:
ICQNM
We have begun to expand the NIST quantum key distribution (QKD) system into a quantum network to support secure cryptography. We are starting with a simple three-node network, one Alice switched between Bob1 and Bob2. To support such a quantum networ
Autor:
Alessandro Restelli, Joshua C. Bienfang, Hai Xu, L. Ma, Charles W. Clark, Barry Hershman, Anastase Nakassis, David H. Su, Carl J. Williams, X. Tang, Alan Mink, Daniel Rogers
Publikováno v:
Quantum Communications Realized.
The desire for quantum-generated cryptographic key for broadband encryption services has motivated the development of high-transmission-rate single-photon quantum key distribution (QKD) systems. The maximum operational transmission rate of a QKD syst
Autor:
X. Tang, Alan Mink, Carl J. Williams, Barry Hershman, L. Ma, Anastase Nakassis, Joshua C. Bienfang, David H. Su, Daniel Rogers, Charles W. Clark
Publikováno v:
Advanced Photon Counting Techniques.
Quantum Cryptography has demonstrated the potential for ultra-secure communications. However, with quantum-channel transmission rates in the MHz range, typical link losses and signal-to-noise ratios have resulted in key-production rates that are impr
Autor:
Ronald F. Boisvert, Charles W. Clark, Alan Mink, Joshua C. Bienfang, Barry Hershman, Lijun Ma, Carl J. Williams, David H. Su, X. Tang, Hai Xu, Anastase Nakassis
Publikováno v:
SPIE Proceedings.
We previously demonstrated a high speed, point to point, quantum key distribution (QKD) system with polarization coding over a fiber link, in which the resulting cryptographic keys were used for one-time pad encryption of real time video signals. In
Autor:
Anastase Nakassis, Charles W. Clark, David H. Su, Joshua C. Bienfang, Alan Mink, Barry Hershman, X. Tang, Carl J. Williams, L. Ma, Daniel Rogers
Publikováno v:
SPIE Proceedings.
Free-space Quantum key distribution (QKD) has shown the potential for the practical production of cryptographic key for ultra-secure communications. The performance of any QKD system is ultimately limited by the signal to noise ratio on the single-ph
Autor:
David H. Su, Xiao Tang, Alan Mink, Joshua C. Bienfang, Carl J. Williams, Charles W. Clark, Tassos Nakassis, Barry Hershman, Ronald F. Boisvert, Lijun Ma
Publikováno v:
SPIE Proceedings.
NIST has developed a high-speed quantum key distribution (QKD) test bed incorporating both free-space and fiber systems. These systems demonstrate a major increase in the attainable rate of QKD systems: over two orders of magnitude faster than other