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Private communication with quantum cascade laser photonic chaos
by
Wong, Chee-Wei
, Elsäßer, Wolfgang
, Herdt, Andreas
, Wu, Jiagui
, Grillot, Frédéric
, Maisons, Grégory
, Spitz, Olivier
, Carras, Mathieu
in
639/166/987
/ 639/624/1075/1082
/ 639/624/1075/187
/ Communication
/ Eavesdropping
/ Electromagnetic interference
/ Encryption
/ Engineering Sciences
/ Free-space optical communication
/ Humanities and Social Sciences
/ Infrared lasers
/ Lasers
/ multidisciplinary
/ Privacy
/ Quantum cascade lasers
/ Science
/ Science (multidisciplinary)
/ Security
/ Space communication
/ Synchronism
/ Synchronization
2021
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Private communication with quantum cascade laser photonic chaos
by
Wong, Chee-Wei
, Elsäßer, Wolfgang
, Herdt, Andreas
, Wu, Jiagui
, Grillot, Frédéric
, Maisons, Grégory
, Spitz, Olivier
, Carras, Mathieu
in
639/166/987
/ 639/624/1075/1082
/ 639/624/1075/187
/ Communication
/ Eavesdropping
/ Electromagnetic interference
/ Encryption
/ Engineering Sciences
/ Free-space optical communication
/ Humanities and Social Sciences
/ Infrared lasers
/ Lasers
/ multidisciplinary
/ Privacy
/ Quantum cascade lasers
/ Science
/ Science (multidisciplinary)
/ Security
/ Space communication
/ Synchronism
/ Synchronization
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Private communication with quantum cascade laser photonic chaos
by
Wong, Chee-Wei
, Elsäßer, Wolfgang
, Herdt, Andreas
, Wu, Jiagui
, Grillot, Frédéric
, Maisons, Grégory
, Spitz, Olivier
, Carras, Mathieu
in
639/166/987
/ 639/624/1075/1082
/ 639/624/1075/187
/ Communication
/ Eavesdropping
/ Electromagnetic interference
/ Encryption
/ Engineering Sciences
/ Free-space optical communication
/ Humanities and Social Sciences
/ Infrared lasers
/ Lasers
/ multidisciplinary
/ Privacy
/ Quantum cascade lasers
/ Science
/ Science (multidisciplinary)
/ Security
/ Space communication
/ Synchronism
/ Synchronization
2021
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Private communication with quantum cascade laser photonic chaos
Journal Article
Private communication with quantum cascade laser photonic chaos
2021
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Overview
Mid-infrared free-space optical communication has a large potential for high speed communication due to its immunity to electromagnetic interference. However, data security against eavesdroppers is among the obstacles for private free-space communication. Here, we show that two uni-directionally coupled quantum cascade lasers operating in the chaotic regime and the synchronization between them allow for the extraction of the information that has been camouflaged in the chaotic emission. This building block represents a key tool to implement a high degree of privacy directly on the physical layer. We realize a proof-of-concept communication at a wavelength of 5.7 μm with a message encryption at a bit rate of 0.5 Mbit/s. Our demonstration of private free-space communication between a transmitter and receiver opens strategies for physical encryption and decryption of a digital message.
Free-space communication in the mid-IR domain has many potential applications, but security is still challenging. Here, the authors use chaos synchronization in a QCL-based free-space link as a way to increase privacy of such transmissions.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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