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Quantum motion of a squeezed mechanical oscillator attained via an optomechanical experiment

Academic Article
Publication Date:
2020
abstract:
We experimentally investigate a mechanical squeezed state realized in a parametrically modulated membrane resonator embedded in an optical cavity. We demonstrate that a quantum characteristic of the squeezed dynamics can be revealed and quantified even in a moderately warm oscillator, through the analysis of motional sidebands. We provide a theoretical framework for quantitatively interpreting the observations and present an extended comparison with the experiment. A notable result is that the spectral shape of each motional sideband provides a clear signature of a quantum mechanical squeezed state without the necessity of absolute calibrations, in particular in the regime where residual fluctuations in the squeezed quadrature are reduced below the zero-point level.
Iris type:
01.01 Articolo in rivista
Keywords:
quantum technologies
List of contributors:
Bonaldi, Michele; Marin, Francesco; Serra, Enrico; Morana, Bruno; Chowdhury, Avishek; Marino, FRANCESCO MARIO SIMONE; Borrielli, ANTONIO LORENZO
Authors of the University:
BORRIELLI ANTONIO LORENZO
MARINO FRANCESCO MARIO SIMONE
Handle:
https://iris.cnr.it/handle/20.500.14243/421952
Published in:
PHYSICAL REVIEW, A PRINT
Journal
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URL

https://journals.aps.org/pra/abstract/10.1103/PhysRevA.102.053505
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