Near-self-imaging cavity for three-mode optoacoustic parametric amplifiers using silicon microresonators

Three-mode optoacoustic parametric amplifiers (OAPAs), in which a pair of photon modes are strongly coupled to an acoustic mode, provide a general platform for investigating self-cooling, parametric instability and very sensitive transducers. Their realization requires an optical cavity with tunable...

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Veröffentlicht in:Applied optics (2004) 2014-02, Vol.53 (5), p.841-849
Hauptverfasser: Liu, Jian, Torres, F A, Ma, Yubo, Zhao, C, Ju, L, Blair, D G, Chao, S, Roch-Jeune, I, Flaminio, R, Michel, C, Liu, K-Y
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Sprache:eng
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Zusammenfassung:Three-mode optoacoustic parametric amplifiers (OAPAs), in which a pair of photon modes are strongly coupled to an acoustic mode, provide a general platform for investigating self-cooling, parametric instability and very sensitive transducers. Their realization requires an optical cavity with tunable transverse modes and a high quality-factor mirror resonator. This paper presents the design of a table-top OAPA based on a near-self-imaging cavity design, using a silicon torsional microresonator. The design achieves a tuning coefficient for the optical mode spacing of 2.46  MHz/mm. This allows tuning of the mode spacing between amplification and self-cooling regimes of the OAPA device. Based on demonstrated resonator parameters (frequencies ∼400  kHz and quality-factors ∼7.5×10(5) we predict that the OAPA can achieve parametric instability with 1.6 μW of input power and mode cooling by a factor of 1.9×10(4) with 30 mW of input power.
ISSN:1559-128X
2155-3165
1539-4522
DOI:10.1364/AO.53.000841