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An oscillating discontinuity is a type of discontinuity in which a function’s values fluctuate infinitely often as the input approaches a particular point. Unlike jump discontinuities, where the function suddenly shifts between two values, or infinite discontinuities, where the function diverges without bound, an oscillating discontinuity arises from rapid back-and-forth variation. Because the function never stabilizes toward a single value, no finite limit exists at that point.One of the...
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Direct stabilization of optomechanical oscillators.

Ke Huang, Mani Hossein-Zadeh

    Optics Letters
    |May 16, 2017
    PubMed
    Summary

    We developed a simple feedback method to stabilize the amplitude of radiofrequency optomechanical oscillators (OMO). This technique effectively suppresses fluctuations from various environmental factors, improving oscillation stability.

    Area of Science:

    • Physics
    • Optomechanics
    • Engineering

    Background:

    • Radiation pressure driven RF optomechanical oscillators (OMO) are susceptible to amplitude fluctuations.
    • Existing stabilization techniques often focus on wavelength detuning, leaving amplitude vulnerable to environmental changes.

    Purpose of the Study:

    • To demonstrate a simple and effective technique for stabilizing the oscillation amplitude of RF OMOs.
    • To improve the stability of both amplitude and frequency in OMOs.

    Main Methods:

    • Implementing a feedback loop that utilizes the oscillation amplitude as the feedback parameter.
    • Controlling the optomechanical gain through this feedback mechanism.

    Main Results:

    • Successfully suppressed amplitude fluctuations and drift in the OMO.

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  • Achieved stabilization of oscillation amplitude independent of laser wavelength, power, ambient temperature, and coupling gap variations.
  • Observed improved stability of oscillation frequency compared to free-running OMOs.
  • Conclusions:

    • The proposed feedback technique offers a robust and simple method for amplitude stabilization in RF OMOs.
    • This approach enhances the overall stability and reliability of optomechanical devices.