Please use this identifier to cite or link to this item: http://hdl.handle.net/2445/178271
Title: Microwave oscillator and frequency comb in a silicon optomechanical cavity with a full phononic bandgap
Author: Mercadé, Laura
Martín, Leopoldo L.
Griol, Amadeu
Navarro Urrios, Daniel
Martínez, Alejandro
Keywords: Oscil·ladors elèctrics
Ressonància
Electric oscillators
Resonance
Issue Date: 31-Jul-2020
Publisher: De Gruyter
Abstract: Cavity optomechanics has recently emerged as a new paradigm enabling the manipulation of mechanical motion via optical fields tightly confined in deformable cavities. When driving an optomechanical (OM) crystal cavity with a laser blue-detuned with respect to the optical resonance, the mechanical motion is amplified, ultimately resulting in phonon lasing at MHz and even GHz frequencies. In this work, we show that a silicon OM crystal cavity performs as an OM microwave oscillator when pumped above the threshold for self-sustained OM oscillations. To this end, we use an OM cavity designed to have a breathing-like mechanical mode at 3.897 GHz in a full phononic bandgap. Our measurements show that the first harmonic of the detected signal displays a phase noise of ≈−100 dBc/Hz at 100 kHz. Stronger blue-detuned driving leads eventually to the formation of an OM frequency comb, whose lines are spaced by the mechanical frequency. We also measure the phase noise for higher-order harmonics and show that, unlike in Brillouin oscillators, the noise is increased as corresponding to classical harmonic mixing. Finally, we present real-time measurements of the comb waveform and show that it can be fitted to a theoretical model recently presented. Our results suggest that silicon OM cavities could be relevant processing elements in microwave photonics and optical RF processing, in particular in disciplines requiring low weight, compactness and fiber interconnection.
Note: Reproducció del document publicat a: https://doi.org/10.1515/nanoph-2020-0148
It is part of: Nanophotonics, 2020, vol. 9, num. 11, p. 3535-3544
URI: http://hdl.handle.net/2445/178271
Related resource: https://doi.org/10.1515/nanoph-2020-0148
ISSN: 2192-8606
Appears in Collections:Articles publicats en revistes (Enginyeria Electrònica i Biomèdica)

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