2020
DOI: 10.1109/access.2020.2963988
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Influence of Fluorescence to Photon Lifetime Ratio on Detection Sensitivity in Laser Self-Mixing Interferometry

Abstract: Laser self-mixing interferometry (SMI) has been widely applied in the fields of precision measurement in scientific research, industry and biomedicine, and most researchers preferentially utilize laser diodes (LD) as light sources due to their compact structure and low cost. In most SMI cases, detection sensitivity rather than structure and cost is always the first concern. So in this article, we concentrate on an influencing factor on detection sensitivity named fluorescence to photon lifetime ratio (FPLR) wh… Show more

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Cited by 6 publications
(1 citation statement)
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“…OF, in which the fraction of electromagnetic radiation emitted from laser is re-injected to its cavity, has gained considerable attention because it can cause a very rich dynamical behaviour which may modify the laser properties significantly. Authors in [1], [2] demonstrated comprehensive analysis of the timedelayed feedback control of steady states for large delay. Tkach and Chaprlyvy [3] classified laser diodes subjected to optical feedback in five regimes.…”
Section: Introductionmentioning
confidence: 99%
“…OF, in which the fraction of electromagnetic radiation emitted from laser is re-injected to its cavity, has gained considerable attention because it can cause a very rich dynamical behaviour which may modify the laser properties significantly. Authors in [1], [2] demonstrated comprehensive analysis of the timedelayed feedback control of steady states for large delay. Tkach and Chaprlyvy [3] classified laser diodes subjected to optical feedback in five regimes.…”
Section: Introductionmentioning
confidence: 99%