Self-mixing interferometry (SMI) is a promising sensing technology. As well as its compact structure, self-alignment and low implementation cost, it has an important advantage that conventional two-beam interferometry does not have, i.e., SMI signal fringe evolves into asymmetrical shape with increasing optical feedback level, which leads to discrimination of target movement directions for unambiguous displacement measurement possible by a single-channel interferometric signal. It is usually achieved by using SMI signals in moderate feedback regime, where the signals exhibit hysteresis and discontinuity. However, in some applications, e.g., in biomedical sensing where the target has a low reflectivity, it is hard for the SMI system to opera...
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...
This tutorial presents a guided tour of laser feedback interferometry, from its origin and early dev...
Self-mixing interferometry (SMI) is a promising sensing technology. As well as its compact structure...
The core components of a Self-Mixing Interferometry (SMI) based displacement sensing system, consist...
International audienceIn this paper, a unified behavioral model of laser feedback based self-mixing ...
International audienceIn this paper, a unified behavioral model of laser feedback based self-mixing ...
This chapter presents an overview of the self-mixing effect in lasers for sensing purposes. The basi...
8 pagesInternational audienceThis paper presents a different approach to classify Self-Mixing (SM) s...
8 pagesInternational audienceThis paper presents a different approach to classify Self-Mixing (SM) s...
This paper reviews the self-mixing interference (SMI) in terms of its operation principle, the featu...
International audienceSelf-mixing interferometry (SMI) is an attractive sensing scheme which typical...
International audienceSelf-mixing interferometry (SMI) is an attractive sensing scheme which typical...
International audienceIn this paper, spectral processing of laser Self-Mixing (SM) interferometric s...
Among the laser based techniques proposed for metrology applications, classical interferometers offe...
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...
This tutorial presents a guided tour of laser feedback interferometry, from its origin and early dev...
Self-mixing interferometry (SMI) is a promising sensing technology. As well as its compact structure...
The core components of a Self-Mixing Interferometry (SMI) based displacement sensing system, consist...
International audienceIn this paper, a unified behavioral model of laser feedback based self-mixing ...
International audienceIn this paper, a unified behavioral model of laser feedback based self-mixing ...
This chapter presents an overview of the self-mixing effect in lasers for sensing purposes. The basi...
8 pagesInternational audienceThis paper presents a different approach to classify Self-Mixing (SM) s...
8 pagesInternational audienceThis paper presents a different approach to classify Self-Mixing (SM) s...
This paper reviews the self-mixing interference (SMI) in terms of its operation principle, the featu...
International audienceSelf-mixing interferometry (SMI) is an attractive sensing scheme which typical...
International audienceSelf-mixing interferometry (SMI) is an attractive sensing scheme which typical...
International audienceIn this paper, spectral processing of laser Self-Mixing (SM) interferometric s...
Among the laser based techniques proposed for metrology applications, classical interferometers offe...
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...
This tutorial presents a guided tour of laser feedback interferometry, from its origin and early dev...