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Suppression of classic and quantum radiation pressure noise by electro-optic feedback

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    34 Citations (Scopus)

    Abstract

    We present theoretical results that demonstrate a new technique that can be used to improve the sensitivity of thermal noise measurements: intracavity intensity stabilization. It is demonstrated that electro-optic feedback can be used to reduce intracavity intensity fluctuations, and the consequent radiation pressure fluctuations, by a factor of 2 below the quantum-noise limit. We show that this reduction is achievable in the presence of large classic intensity fluctuations in the incident laser beam. The benefits of this scheme are a consequence of the sub-Poissonian intensity statistics of the field inside a feedback loop and the quantum nondemolition nature of radiation pressure noise as a readout system for the intracavity intensity fluctuations.

    Original languageEnglish
    Pages (from-to)259-261
    Number of pages3
    JournalOptics Letters
    Volume24
    Issue number4
    DOIs
    Publication statusPublished - 15 Feb 1999

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