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Secure communication system based on silicon photon chaos source

A technology of secure communication and silicon photonics, which is applied in the field of optoelectronics, can solve problems such as unfavorable and convenient use, difficult to meet, etc., and achieve the effects of reducing experimental costs, improving production efficiency, and improving the quality of secure communication

Inactive Publication Date: 2018-01-09
SOUTHWEST UNIVERSITY
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  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This patented technology allows an opaque material called silicone that can be easily mixed together without losing its effectiveness when exposed to light or other stimuli like heating it up. It uses special techniques such as injection of certain types of signals onto this transparent material before exposure to these stimulations. By repeating these inputs multiple times during the manufacturing cycle, there will be create various forms of Chaos (chaotic) waves). These waveforms have unique characteristics depending upon their originating sources - they may come from either one component or another. They cannot be copiedrights effectively unless carefully controlled through careful handling procedures. Overall, this innovation improves security measures against attacks while reducing costs compared to existing methods.

Problems solved by technology

This patents discusses different techniques used by humanity during an increasingly fast tempo between sending data over wireless networks (WLAN). However, there still remains room for improvement in achieving this type of securing communication without making it bigger than necessary or requiring expensive equipment like quantum key distribution devices. To address these issues, new lightweight materials called plasmonics were developed through advanced science advancements. These materials allow us to create small yet powerful chirp signals while maintaining its integrity even if we don’t require any extra effort.

Method used

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  • Secure communication system based on silicon photon chaos source
  • Secure communication system based on silicon photon chaos source
  • Secure communication system based on silicon photon chaos source

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Embodiment Construction

[0022] See Figure 1-5 , the secure communication system based on the silicon photon chaotic source provided by the present invention is characterized in that the system includes a chaotic driving module 1, a response system 3, a signal input module 2 and a signal receiving module 4, and the chaotic driving module 1 generates a main chaotic The signal is injected into the response system 3 (entering chaos will go through processes such as pure optical oscillation, non-periodic and sub-oscillation, and chaotic regions. In this embodiment, we only use the part of the chaotic region), and at the same time, the response system 3 itself generates several subordinate Chaotic signal, injecting main chaotic signals of different strengths into the response system 3 until the several subordinate chaotic signals reach chaos synchronization, the signal input module 2 and the signal receiving module 4 are respectively electrically connected to the response system 3, and the signal input mod...

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Abstract

The invention provides a secure communication system based on a silicon photon chaos source. The secure communication system comprises a chaos driving module, a response system, a signal input moduleand a signal receiving module; the chaos driving module generates one main chaos signal and injects into the response system; meanwhile, the response system generates a plurality of subordinated chaossignals by own, and injects different intensities of the main chaos signals into the response system till the plurality of subordinated chaos signals reach chaos synchronization; and the signal inputmodule and the signal receiving module are respectively and electrically connected with the response system. The secure communication system provided by the invention has the following beneficial effects: since the chaos source generated by a silicon photon in a photo crystal microcavity is adopted, the integration of a chaos generation device is implemented; the stability of the chaos source isgood, so the secure communication quality is improved, the miniaturization and the dexterity of the chaos source are implemented, the experimental cost is reduced and the production efficiency is improved; a reliable implementation solution is provided for a high-speed and quick secure communication generation device, and the requirement of modern secure communication is met.

Description

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Claims

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Application Information

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Owner SOUTHWEST UNIVERSITY
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