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    Controlling the effect of quantum fluctuations in a driven nonlinear parametric oscillator

    Somnath Roy*

    Chitrak Bhadra†

    Dhrubajyoti Biswas‡

    • *Contact author: roysomnath63@gmail.com
    • †Contact author: chitrak.iitb@gmail.com
    • ‡Contact author: dhrubajyoti98@gmail.com, dhrubajyoti.ra@nbrc.ac.in, dhrubajyoti98@alumni.iitm.ac.in

    Phys. Rev. E 112, 024207 – Published 6 August, 2025

    DOI: https://doi.org/10.1103/h76f-2mbl

    Abstract

    This study investigates the interplay between high-frequency external forcing and the intrinsic dynamics of a quantum nonlinear parametric oscillator. To analyze this system, classical equations of motion of the averages of quantum operators are derived and solved by employing suitable truncation schemes and the Blekhman perturbation method. It is observed that quantum fluctuations and oscillation amplitudes within the parametric resonance zone can be modulated through the fast external periodic forcing. Moreover, the influence of the strength of driving on the overall system dynamics is systematically explored. Finally, the theoretical predictions are validated through numerical simulations, establishing the reliability of the developed framework.

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