Projekteja vuodessa
Abstrakti
We report a study of a cavity optomechanical system driven by narrowband electromagnetic fields, which are applied either in the form of uncorrelated noise, or as a more structured spectrum. The bandwidth of the driving spectra is smaller than the mechanical resonant frequency, and thus we can describe the resulting physics using concepts familiar from regular cavity optomechanics in the resolved-sideband limit. With a blue-detuned noise driving, the noise-induced interaction leads to anti-damping of the mechanical oscillator, and a self-oscillation threshold at an average noise power that is comparable to that of a coherent driving tone. This process can be seen as noise-induced dynamical amplification of mechanical motion. However, when the noise bandwidth is reduced down to the order of the mechanical damping, we discover a large shift of the power threshold of self-oscillation. This is due to the oscillator adiabatically following the instantaneous noise profile. In addition to blue-detuned noise driving, we investigate narrowband driving consisting of two coherent drive tones nearby in frequency. Also in these cases, we observe deviations from a naive optomechanical description relying only on the tones’ frequencies and powers.
Alkuperäiskieli | Englanti |
---|---|
Sivut | 720-734 |
Sivumäärä | 15 |
Julkaisu | Journal of Low Temperature Physics |
Vuosikerta | 217 |
Numero | 5-6 |
Varhainen verkossa julkaisun päivämäärä | 3 lokak. 2024 |
DOI - pysyväislinkit | |
Tila | Julkaistu - jouluk. 2024 |
OKM-julkaisutyyppi | A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä |
Sormenjälki
Sukella tutkimusaiheisiin 'Optomechanics Driven by Noisy and Narrowband Fields'. Ne muodostavat yhdessä ainutlaatuisen sormenjäljen.-
GUANTUM: Probing the limits of quantum mechanics and gravity with micromechanical oscillators
Sillanpää, M. (Vastuullinen tutkija), Cutting, R. (Projektin jäsen), Välimaa, A. (Projektin jäsen), Wang, C. (Projektin jäsen), Depellette, J. (Projektin jäsen), Rej, E. (Projektin jäsen), Lin, G. (Projektin jäsen) & Herbst, M. (Projektin jäsen)
01/10/2021 → 30/09/2026
Projekti: EU: ERC grants
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Laure Mercier de Lepinay Postdoc: Vacuum forces between superconductors probed with microwave optomechanics
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01/09/2021 → 31/08/2024
Projekti: Academy of Finland: Other research funding
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01/01/2019 → 31/12/2023
Projekti: EU: Framework programmes funding