Cargando…
Sagnac with Double-Sense Twisted Low-Birefringence Standard Fiber as Vibration Sensor
In this work, we study a double-sense twisted low-birefringence Sagnac loop structure as a sound/vibration sensing device. We study the relation between the adjustments of a wave retarder inside the loop (which allows controlling the transmission characteristic to deliver 10, 100, and 300 [Formula:...
Autores principales: | , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9654885/ https://www.ncbi.nlm.nih.gov/pubmed/36366255 http://dx.doi.org/10.3390/s22218557 |
_version_ | 1784829046750707712 |
---|---|
author | Santiago-Hernández, Héctor Beltrán-González, Anuar Benjamín Mora-Nuñez, Azael Bravo-Medina, Beethoven Pottiez, Olivier |
author_facet | Santiago-Hernández, Héctor Beltrán-González, Anuar Benjamín Mora-Nuñez, Azael Bravo-Medina, Beethoven Pottiez, Olivier |
author_sort | Santiago-Hernández, Héctor |
collection | PubMed |
description | In this work, we study a double-sense twisted low-birefringence Sagnac loop structure as a sound/vibration sensing device. We study the relation between the adjustments of a wave retarder inside the loop (which allows controlling the transmission characteristic to deliver 10, 100, and 300 [Formula: see text] average power at the output of the system) and the response of the Sagnac sensor to vibration frequencies ranging from 0 to 22 kHz. For a 300 m loop Sagnac, two sets of experiments were carried out, playing at the same time all the sound frequencies mixed for ∼1 s, and playing a sweep of frequencies for 30 s. In both cases, the time- and frequency-domain transmission amplitudes are larger for an average power of 10 [Formula: see text] , and smaller for an average power of 300 [Formula: see text]. For mixed frequencies, the Fourier analysis shows that the Sagnac response is larger for low frequencies (from 0 to ∼5 kHz) than for high frequencies (from ∼5 kHz to ∼22 kHz). For a sweep of frequencies, the results reveal that the interferometer perceives all frequencies. However, beyond ∼2.5 kHz, harmonics are present each ∼50 Hz, revealing that some resonances are present. The results about the influence of the power transmission through the polarizer and power emission of laser diode (LD) on the Sagnac interferometer response at high frequencies reveal that our system is robust, and the results are highly reproducible, and harmonics do not depend on the state of polarization at the input of the Sagnac interferometer. Furthermore, increasing the LD output power from 5 mW to 67.5 mW allows us to eliminate noisy signals at the system output. in our setup, the minimum sound level detected was 56 dB. On the other hand, the experimental results of a 10 m loop OFSI reveal that the response at low frequencies (1.5 kHz to 5 kHz) is minor compared with the 300 m loop OFSI. However, the response at high frequencies is low but still enables the detection of these frequencies, yielding the possibility of tuning the response of the vibration sensor by varying the length of the Sagnac loop. |
format | Online Article Text |
id | pubmed-9654885 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-96548852022-11-15 Sagnac with Double-Sense Twisted Low-Birefringence Standard Fiber as Vibration Sensor Santiago-Hernández, Héctor Beltrán-González, Anuar Benjamín Mora-Nuñez, Azael Bravo-Medina, Beethoven Pottiez, Olivier Sensors (Basel) Article In this work, we study a double-sense twisted low-birefringence Sagnac loop structure as a sound/vibration sensing device. We study the relation between the adjustments of a wave retarder inside the loop (which allows controlling the transmission characteristic to deliver 10, 100, and 300 [Formula: see text] average power at the output of the system) and the response of the Sagnac sensor to vibration frequencies ranging from 0 to 22 kHz. For a 300 m loop Sagnac, two sets of experiments were carried out, playing at the same time all the sound frequencies mixed for ∼1 s, and playing a sweep of frequencies for 30 s. In both cases, the time- and frequency-domain transmission amplitudes are larger for an average power of 10 [Formula: see text] , and smaller for an average power of 300 [Formula: see text]. For mixed frequencies, the Fourier analysis shows that the Sagnac response is larger for low frequencies (from 0 to ∼5 kHz) than for high frequencies (from ∼5 kHz to ∼22 kHz). For a sweep of frequencies, the results reveal that the interferometer perceives all frequencies. However, beyond ∼2.5 kHz, harmonics are present each ∼50 Hz, revealing that some resonances are present. The results about the influence of the power transmission through the polarizer and power emission of laser diode (LD) on the Sagnac interferometer response at high frequencies reveal that our system is robust, and the results are highly reproducible, and harmonics do not depend on the state of polarization at the input of the Sagnac interferometer. Furthermore, increasing the LD output power from 5 mW to 67.5 mW allows us to eliminate noisy signals at the system output. in our setup, the minimum sound level detected was 56 dB. On the other hand, the experimental results of a 10 m loop OFSI reveal that the response at low frequencies (1.5 kHz to 5 kHz) is minor compared with the 300 m loop OFSI. However, the response at high frequencies is low but still enables the detection of these frequencies, yielding the possibility of tuning the response of the vibration sensor by varying the length of the Sagnac loop. MDPI 2022-11-07 /pmc/articles/PMC9654885/ /pubmed/36366255 http://dx.doi.org/10.3390/s22218557 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Santiago-Hernández, Héctor Beltrán-González, Anuar Benjamín Mora-Nuñez, Azael Bravo-Medina, Beethoven Pottiez, Olivier Sagnac with Double-Sense Twisted Low-Birefringence Standard Fiber as Vibration Sensor |
title | Sagnac with Double-Sense Twisted Low-Birefringence Standard Fiber as Vibration Sensor |
title_full | Sagnac with Double-Sense Twisted Low-Birefringence Standard Fiber as Vibration Sensor |
title_fullStr | Sagnac with Double-Sense Twisted Low-Birefringence Standard Fiber as Vibration Sensor |
title_full_unstemmed | Sagnac with Double-Sense Twisted Low-Birefringence Standard Fiber as Vibration Sensor |
title_short | Sagnac with Double-Sense Twisted Low-Birefringence Standard Fiber as Vibration Sensor |
title_sort | sagnac with double-sense twisted low-birefringence standard fiber as vibration sensor |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9654885/ https://www.ncbi.nlm.nih.gov/pubmed/36366255 http://dx.doi.org/10.3390/s22218557 |
work_keys_str_mv | AT santiagohernandezhector sagnacwithdoublesensetwistedlowbirefringencestandardfiberasvibrationsensor AT beltrangonzalezanuarbenjamin sagnacwithdoublesensetwistedlowbirefringencestandardfiberasvibrationsensor AT moranunezazael sagnacwithdoublesensetwistedlowbirefringencestandardfiberasvibrationsensor AT bravomedinabeethoven sagnacwithdoublesensetwistedlowbirefringencestandardfiberasvibrationsensor AT pottiezolivier sagnacwithdoublesensetwistedlowbirefringencestandardfiberasvibrationsensor |