Fiber cavity ring-down using an optical time-domain reflectometer

D. J. Passos , S. O. Silva , J. R. A. Fernandes , M. B. Marques , O. Frazão

Photonic Sensors ›› 2013, Vol. 4 ›› Issue (4) : 295 -299.

PDF
Photonic Sensors ›› 2013, Vol. 4 ›› Issue (4) : 295 -299. DOI: 10.1007/s13320-014-0205-0
Article

Fiber cavity ring-down using an optical time-domain reflectometer

Author information +
History +
PDF

Abstract

This work presented a demonstration of the potential for a fiber based cavity ring-down (CRD) using an optical time-domain reflectometer (OTDR). The OTDR was used to send the impulses down into about 20 km of a standard single optical fiber, at the end of which the fiber cavity ring-down was placed. The OTDR measured no appreciable losses, so other CRDs multiplexed could be spliced in parallel along the same optical fiber. To demonstrate the behavior and sensitivity of the proposed configuration, a displacement sensor based on a fiber taper with a diameter of 50 μm was placed inside the fiber loop, and the induced losses were measured on the CRD signal — a sensitivity of 11.8 ± 0.5 μs/mm was achieved. The dynamic range of the sensing head used in this configuration was about 2 mm. Finally, this work was also compared with different works published in the literature.

Keywords

Optical fiber sensors / cavity ring-down / OTDR

Cite this article

Download citation ▾
D. J. Passos, S. O. Silva, J. R. A. Fernandes, M. B. Marques, O. Frazão. Fiber cavity ring-down using an optical time-domain reflectometer. Photonic Sensors, 2013, 4(4): 295-299 DOI:10.1007/s13320-014-0205-0

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Berden G, Peeters R, Meijer G. Cavity ring-down spectroscopy: experimental schemes and applications. International Reviews in Physical Chemistry, 2000, 19(4): 565-607.

[2]

Herbelin J M, McKay J A, Kwok M A, Uenten R H, Urevig D S, Spencer D J, . Sensitive measurement of photon lifetime and true reflectances in an optical cavity by a phase-shift method. Applied Optics, 1980, 19(1): 144-147.

[3]

Anderson D Z, Frisch J C, Masser C S. Mirror reflectometer based on optical cavity decay time. Applied Optics, 1984, 23(8): 1238-1245.

[4]

Stewart G, Atherton K, Culshaw B. Cavity-enhanced spectroscopy in fiber cavities. Optics Letters, 2004, 29(5): 442-444.

[5]

Brzozowski W P T D M, Rabinowitz P, Lehmann K K. Cavity ring-down strain gauge. Optics Letters, 2004, 29(12): 1339-1341.

[6]

Ni N, Chan C C, Dong X Y, Sun J, Shum P. Cavity ring-down long period fiber grating strain sensor. Measurement Science and Technology, 2007, 18(10): 3135-3138.

[7]

Wang C, Scherrer S T. Fiber ring-down pressure sensors. Optics Letters, 2004, 29(4): 352-354.

[8]

Wang C. Fiber ringdown temperature sensor. Optical Engineering Letters, 2005, 44(3): 030503.

[9]

Stewart G, Atherton K, Yu H, Culshaw B. An investigation of an optical fibre amplifier loop for intra-cavity and ring-down cavity loss measurements. Measurement Science and Technology, 2001, 12(7): 843-849.

[10]

Brown R S, Kozin I, Tong Z, Oleschuk R D, Loock H P. Fiber-loop ring-down spectroscopy. The Journal of Chemical Physics, 2002, 117(23): 10444-10447.

[11]

Tarsa P B, Wist A D, Rabinowitz P, Lehmanna K K. Single cell detection by cavity ring-down spectroscopy. Applied Physics Letters, 2004, 85(19): 4523-4525.

[12]

Barnes J A, Dreher M, Plett K, Brown R, Crudden C M, Loock H P. Chemical sensor based on a long period fibre grating modified by a functionalized polymethylsiloxane coating. Analyst, 2008, 133(11): 1541-1549.

[13]

Rushworth C M, James D, Lee J W L, Vallance C. Top notch design for fiber-loop cavity ring-down spectroscopy. Analytical Chemistry, 2011, 83(22): 8492-8500.

[14]

Waechter H, Litman J, Cheung A H, Barnes J A, Loock H P. Chemical sensing using fiber cavity ring-down spectroscopy. Sensors, 2010, 10(3): 1716-1742.

[15]

Ni N, Chan C, Xia L, Shum P. Fiber cavity ring-down refractive index sensor. IEEE Photonics Technology Letters, 2008, 20(16): 1351-1353.

[16]

Zhou K M, Webb D, Farries M, Hayes N, Zhang L, Bennion I. Biochemical sensor based on a novel all-fibre cavity ring down spectroscopy technique incorporating a tilted fibre Bragg grating. Optics and Lasers in Engineering, 2009, 47(10): 1023-1027.

[17]

Zhou K M, Webb D J, Mou C B, Farries M, Hayes N, Bennion I. Optical fiber cavity ring down measurement of refractive index with a microchannel drilled by femtosecond laser. IEEE Photonics Technology Letters, 2009, 21(22): 1653-1655.

[18]

Wong W C, Zhou W, Chan C C, Dong X, Leong K C. Cavity ring-down refractive index sensor using photonic crystal fiber interferometer. Sensors and Actuators B: Chemical, 2012, 161(1): 108-113.

[19]

Passos D J, Silva S O, Marques M B, Frazão O. Cavity ring-down with OTDR for remote sensing. Proc. SPIE (OFS - 23rd International Conference on Optical Fibre Sensors), 2014, 9157, 91570G

[20]

Jorge P A S, Ferreira L A, Santos J L. Analysis of the flyback effects on the serrodyne interferometric demodulation of fiber optic Bragg grating sensors. Optical Engineering, 2000, 39(5): 1399-1404.

AI Summary AI Mindmap
PDF

144

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/