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Investigation on the monolithically integrated chaotic optical transmitting chip based on parallel EAMs.

Mi Li, Yuan Feng, Yisi Wang

    Optics Letters
    |February 1, 2024
    PubMed
    Summary

    We developed a novel integrated chaotic optical transmitter chip using parallel electro-absorption modulators (EAMs). This chip enables secure chaotic optical communication and advances system miniaturization and integration.

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    Area of Science:

    • Photonics and Optical Communications
    • Information Security
    • Integrated Optics

    Background:

    • Chaotic optical communication offers physical layer security but faces integration challenges.
    • Monolithic integration of lasers and lithium niobate modulators is a key hurdle.
    • Electro-optic feedback systems are crucial for integrated chaotic optical communication.

    Purpose of the Study:

    • To propose a monolithically integrated chaotic optical transmitting chip.
    • To overcome the integration limitations of current chaotic optical communication systems.
    • To validate the performance of the proposed chip for secure communication.

    Main Methods:

    • Monolithic integration of parallel electro-absorption modulators (EAMs).
    • Performance validation using phase portraits and Fast Fourier Transform (FFT).
    • Analysis through Probability Density Function (PDF), largest Lyapunov exponents, and bifurcation.

    Main Results:

    • Demonstrated the feasibility of the monolithically integrated chaotic optical transmitting chip.
    • Validated chaotic signal generation and characteristics.
    • Confirmed the chip's potential for secure optical communication.

    Conclusions:

    • The proposed chip is a significant step towards miniaturized and integrated chaotic optical communication systems.
    • This integration overcomes previous limitations, paving the way for practical applications.
    • The chip's performance validates its suitability for secure information transmission.