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Chaos synchronization of VCSELs with common injection of polarization-random light

Xinhui Zhang, Anbang Wang, Junpei Xu, Yuehui Sun, Laihong Mo, Yuhe Zhang, Yuwen Qin, Yuncai Wang

2023Optics Express11 citationsDOIOpen Access PDF

Abstract

We propose and numerically demonstrate chaos synchronization of two vertical-cavity surface-emitting lasers (VCSELs) induced by common injection of constant-amplitude random-polarization light for physical key distribution. Results show that synchronization is sensitive to polarization rotation of injection light, and synchronization coefficients larger than 0.9 can be achieved as the rotation-degree mismatch is smaller than ±10°. Therefore, polarization rotation degree can serve as a hardware key parameter. Furthermore, each laser's output has no correlation to the constant amplitude of the injected light. Their components with identical polarization state, e.g. x or y polarization of VCSEL, also have low correlation coefficient smaller than 0.2. It is therefore believed that this synchronization scheme can provide a security-enhanced method of physical key distribution.

Topics & Concepts

OpticsPolarization (electrochemistry)Semiconductor laser theoryCircular polarizationPhysicsSynchronization (alternating current)Materials scienceLaserComputer scienceTelecommunicationsChannel (broadcasting)Physical chemistryChemistryMicrostripSemiconductor Lasers and Optical DevicesNonlinear Dynamics and Pattern FormationNeural Networks and Reservoir Computing