International audienceIn this paper, a method is proposed to recover displacements with nanometric precision based on spectral analysis of the feedback phase of self-mixing laser interferometric signal. This method is an enhancement of the previously developed method called Time-domain Frequency-domain Signal Processing (TFSP) which could only recover target vibration(s) with greater than lambda/8 amplitude (where lambda is the laser's wavelength) so long as at least one of the vibration's components has an amplitude greater than or equal to lambda/2. Using TFSP reconstruction as a first approximation of the main target displacement combined with parameter (optical feedback factor C and linewidth enhancement factor alpha) estimation, the pr...
The core components of a Self-Mixing Interferometry (SMI) based displacement sensing system, consist...
8 pagesInternational audienceThis paper presents a different approach to classify Self-Mixing (SM) s...
The nonlinear dynamics of a semiconductor laser with optical feedback (OF) combined with direct curr...
International audienceIn this paper, a method is proposed to recover displacements with nanometric p...
International audienceIn this paper, spectral processing of laser Self-Mixing (SM) interferometric s...
International audienceIn this paper, spectral processing of laser Self-Mixing (SM) interferometric s...
International audienceIn this paper, spectral processing of laser Self-Mixing (SM) interferometric s...
International audienceIn this paper, a novel time-frequency signal processing approach is presented ...
International audienceIn this paper, a novel time-frequency signal processing approach is presented ...
Abstract—In this paper, the inherent error as well as the robustness of a previously published displ...
International audienceIn this paper, the inherent error as well as the robustness of a previously pu...
International audienceIn this paper, the inherent error as well as the robustness of a previously pu...
We demonstrate a novel method that makes an efficient use of laser nonlinear dynamics when subject t...
International audienceIn this paper, an adaptive method of cancellation of parasitic vibrations is p...
We demonstrate a novel method that makes an efficient use of laser nonlinear dynamics when subject t...
The core components of a Self-Mixing Interferometry (SMI) based displacement sensing system, consist...
8 pagesInternational audienceThis paper presents a different approach to classify Self-Mixing (SM) s...
The nonlinear dynamics of a semiconductor laser with optical feedback (OF) combined with direct curr...
International audienceIn this paper, a method is proposed to recover displacements with nanometric p...
International audienceIn this paper, spectral processing of laser Self-Mixing (SM) interferometric s...
International audienceIn this paper, spectral processing of laser Self-Mixing (SM) interferometric s...
International audienceIn this paper, spectral processing of laser Self-Mixing (SM) interferometric s...
International audienceIn this paper, a novel time-frequency signal processing approach is presented ...
International audienceIn this paper, a novel time-frequency signal processing approach is presented ...
Abstract—In this paper, the inherent error as well as the robustness of a previously published displ...
International audienceIn this paper, the inherent error as well as the robustness of a previously pu...
International audienceIn this paper, the inherent error as well as the robustness of a previously pu...
We demonstrate a novel method that makes an efficient use of laser nonlinear dynamics when subject t...
International audienceIn this paper, an adaptive method of cancellation of parasitic vibrations is p...
We demonstrate a novel method that makes an efficient use of laser nonlinear dynamics when subject t...
The core components of a Self-Mixing Interferometry (SMI) based displacement sensing system, consist...
8 pagesInternational audienceThis paper presents a different approach to classify Self-Mixing (SM) s...
The nonlinear dynamics of a semiconductor laser with optical feedback (OF) combined with direct curr...