Phase-resolved heterodyne holographic vibrometry with a strobe local oscillator - Laboratoire Charles Coulomb (L2C) Accéder directement au contenu
Article Dans Une Revue Optics Letters Année : 2013

Phase-resolved heterodyne holographic vibrometry with a strobe local oscillator

Résumé

We report a demonstration of phase-resolved vibrometry, in which out-of-plane sinusoidal motion is assessed by heterodyne holography. In heterodyne holography, the beam in the reference channel is an optical local oscillator (LO). It is frequency-shifted with respect to the illumination beam to enable frequency conversion within the sensor bandwidth. The proposed scheme introduces a strobe LO, where the reference beam is frequency-shifted and modulated in amplitude, to alleviate the issue of phase retrieval. The strobe LO is both tuned around the first optical modulation side band at the vibration frequency, and modulated in amplitude to freeze selected mechanical vibration states sequentially. The phase map of the vibration can then be derived from the demodulation of successive vibration states.
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Dates et versions

hal-00756128 , version 1 (22-11-2012)
hal-00756128 , version 2 (22-12-2012)

Identifiants

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Nicolas Verrier, Michel Gross, Michael Atlan. Phase-resolved heterodyne holographic vibrometry with a strobe local oscillator. Optics Letters, 2013, 38 (3), pp.377-379. ⟨10.1364/OL.38.000377⟩. ⟨hal-00756128v2⟩
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