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Chowdhury, A. (author), Vezio, P. (author), Bonaldi, M. (author), Borrielli, A. (author), Marino, F. (author), Morana, B. (author), Pandraud, G. (author), Sarro, Pasqualina M (author), Serra, E. (author)
Cavity optomechanics has achieved the major breakthrough of the preparation and observation of macroscopic mechanical oscillators in non-classical states. The development of reliable indicators of the oscillator properties in these conditions is important also for applications to quantum technologies. We compare two procedures to infer the...
journal article 2019
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Chowdhury, A. (author), Vezio, P. (author), Bonaldi, M. (author), Borrielli, A. (author), Marino, F. (author), Morana, B. (author), Pandraud, G. (author), Pontin, A. (author), Sarro, Pasqualina M (author)
We describe a method to control the cavity detuning in optomechanics experiments. This helps accurate measurements of the asymmetry in the motional sidebands, that testify the quantum behavior of the oscillator and quantifies its occupation number.
conference paper 2019
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Pontin, A. (author), Bonaldi, M. (author), Borrielli, A. (author), Marconi, L. (author), Marino, F. (author), Pandraud, G. (author), Prodi, G.A. (author), Sarro, Pasqualina M (author), Serra, E. (author), Marin, F. (author)
According to quantum mechanics, if we keep observing a continuous variable we generally disturb its evolution. For a class of observables, however, it is possible to implement a so-called quantum nondemolition measurement: by confining the perturbation to the conjugate variable, the observable is estimated with arbitrary accuracy, or prepared...
journal article 2018
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Pontin, A. (author), Bonaldi, M. (author), Borrielli, Antonio (author), Marconi, L. (author), Marino, F. (author), Pandraud, G. (author), Prodi, G.A. (author), Sarro, Pasqualina M (author), Serra, E. (author), Marin, F. (author)
Summary form only given. According to quantum mechanics, there exists a class of observables for which is possible to confine the perturbation produced by a continuous measurement to the conjugate variable. Therefore, it is possible to devise experimental schemes that allow estimating the observed variable with arbitrary accuracy, or preparing...
abstract 2017
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Serra, E. (author), Bawaj, M. (author), Borrielli, A. (author), Di Giuseppe, G. (author), Forte, S. (author), Kralj, N. (author), Malossi, N. (author), Marconi, L. (author), Marin, F. (author), Marino, F. (author), Morana, B. (author), Natali, R. (author), Pandraud, G. (author), Pontin, A. (author), Prodi, G.A. (author), Rossi, M. (author), Sarro, Pasqualina M (author), Vitali, D. (author), Bonaldi, M. (author)
In view of the integration of membrane resonators with more complex MEMS structures, we developed a general fabrication procedure for circular shape SiN<sub><i>x</i></sub> membranes using Deep Reactive Ion Etching (DRIE). Large area and high-stress SiN<sub><i>x</i></sub> membranes were fabricated and used as optomechanical resonators in a...
journal article 2016
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Borrielli, A. (author), Pontin, A. (author), Cataliotti, F.S. (author), Marconi, L. (author), Marin, F. (author), Marino, F. (author), Pandraud, G. (author), Prodi, G.A. (author), Serra, E. (author), Bonaldi, M. (author)
We present an oscillating micromirror with mechanical quality factors Q up to 1.2×106 at cryogenic temperature and optical losses lower than 20 ppm. The device is specifically designed to ease the detection of ponderomotive squeezing (or, more generally, to produce a cavity quantum optomechanical system) at frequencies of about 100 kHz. The...
journal article 2015
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