• Title/Summary/Keyword: Optical fiber measurement

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Spectrum Characteristics of 1.55 ${\mu}m$ PBH-DFB-LD (광통신용 1.55 ${\mu}m$ PBH-DFB-LD 스펙트럼 특성)

  • 장동훈;이중기;이승원;박경현;김정수;김홍만;황인덕;박형무
    • Korean Journal of Optics and Photonics
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    • v.5 no.1
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    • pp.120-124
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    • 1994
  • PBH-DFB-LD emitting at $1.55\mu\textrm{m}$ wavelength has been fabricated for 2.5 Gbps optical fiber communications. For fabrication of PBH-DFB-LD. inteference expose for grating formation and 3-step LPE epitaxial growth was used. Fabricated PBH-DFB-LD operates in single longitudinal mode with more than 35dB SMSR and its threshold current is less than 15 mA. The operating wavelength is 1530-1550 nm with the temperature dependence of $0.9\AA/^{\circ}C$. Coupling coefficient(K) was estimated as $$97 cm^{-1} by means of stop-band measurement. PBH-DFB-LD fabricated in this experiment can be applicable as light source for 2.5 Gbps optical fiber communication system. ystem.

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Long-period grating sensor signal processing system by Bragg wavelength measurement using SLD tunable light source (SLD 동조 광원을 이용한 브라그 파장 측정 LPG 센서의 신호처리 시스템)

  • Lee Hojoon;Bae Yoonkyung
    • Korean Journal of Optics and Photonics
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    • v.15 no.5
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    • pp.409-414
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    • 2004
  • A signal processing system of long period grating sensor that works in the optical wavelength domain is proposed. The system is based on a wavelength-swept semiconductor light source that includes an SLD and a F-P tunable filter. The hysteresis effects of PZT in the F-P filter is compensated by using an etalon filter and an athermal Fiber Bragg Grating. The detected signals from the photodiode are transmitted to a computer using an A/D converter and the result of the process is displayed in the monitor.

Measurement of Numerical Aperture of Graded-index Plastic Optical Fiber by Using a Variable Aperture (입사광의 크기 조절을 통한 경사굴절률 플라스틱 광섬유의 수치구경 측정기법)

  • Kim, Dae-Kyu;Kim, Bo-Ram;Lee, Byoung-Hwak;Park, Seung-Han
    • Korean Journal of Optics and Photonics
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    • v.22 no.1
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    • pp.5-9
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    • 2011
  • There are technical difficulties in measuring the numerical apertures of multi-mode gradient-index plastic optical fibers (GI-POFs) due to their strong speckle noise originating from dopants, non-uniformity of gradient-index profile, and multi-mode interference. Therefore, we propose a new method of obtaining the numerical aperture by controlling the size of the incident laser beam and measuring the numerical aperture of GI-POF. The results show that we can get a value for the numerical aperture of GI-POF very similar to that measured by the conventional method. We can also obtain the optimum launching condition of input beam and maximum coupling efficiency.

Application and Development Trend of OTDRs (분포형 광섬유센서의 응용 및 개발 동향)

  • Chae, Kwagn-Seok;Lee, Sang-Pil;Lee, Chang-Ho;Han, Sung-Jae
    • Tunnel and Underground Space
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    • v.21 no.1
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    • pp.1-10
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    • 2011
  • In these days, the development of optical fiber sensor technology is so remarkable that it can measure various physical and chemical quantities ranging from a few millimeters to over several kilometers. In addition, it is attempted to assess the structural integrity of the state of the advanced technologies and existing structures such as ships, aircrafts, and bridges. This paper introduced the case histories of the measuring technology of optical fiber applied on structures such as roads and tunnels. The case history using OTDR (Optical Time Domain Reflectometery) was also introduced in this paper. Measurement of the pre-convergence of a tunnel is essential to assess the safety of a tunnel and understand the geological conditions ahead of an advancing tunnel. Therefore, the pre-convergence measuring technology using OTDR is expected to substitute conventional measuring techniques.

Fiber-optic macro-bending sensor aided by metal capillary (매크로 벤딩 측정을 위한 금속 모세관 결합 광섬유 센서)

  • 백승인;정윤찬;이병호
    • Korean Journal of Optics and Photonics
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    • v.12 no.4
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    • pp.289-293
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    • 2001
  • A metal capillary splice fiber-optic sensor was fabricated for use as an intensity-based macro-bending sensor. As the radius of curvature due to the macro-bending decreases, the angular misalignment of the fiber ends inside the metal capillary increases, i.e., the coupling efficiency of the fiber splice is reduced. Thus, macro-bending can be detected by the measurement of the reduction of transmitted power. The detectable range of macro-bending. was measured approximately from 20 mm to 85 mm. The center wavelengths of the fiber Bragg gratings are 1543.3 nm and 1549.5 nm, respectively. The maximum bending loss of this sensor was measured about -11.92 dB. Using this metal capillary spliced fiber sensor and fiber Bragg gratings, macro-bending detection has been demonstrated, and it is shown to have potential for multi-point macro-bending sensors. nsors.

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Fiber-optic Temperature Sensor Using a Silicone Oil and an OTDR (OTDR을 이용한 실리콘 오일 기반의 광섬유 온도 센서)

  • Jang, Jae Seok;Yoo, Wook Jae;Shin, Sang Hun;Lee, Dong Eun;Kim, Mingeon;Kim, Hye Jin;Song, Young Beom;Jang, Kyoung Won;Cho, Seunghyun;Lee, Bongsoo
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.64 no.11
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    • pp.1592-1597
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    • 2015
  • In this study, we developed a fiber-optic temperature sensor (FOTS) based on a silicone oil and an optical time domain reflectometer (OTDR) to apply the measurement of a coolant leakage in the nuclear power plant. The sensing probe of the FOTS consists of a silicone oil, a stainless steel cap, a FC terminator, and a single mode optical fiber. Fresnel reflection arising at the interface between the silicone oil and the single mode optical fiber in the sensing probe is changed by varying the refractive index of the silicone oil according to the temperature. Therefore, we measured the optical power of the light signals reflected from the sensing probe. The measurable temperature range of the FOTS using a Cu-coated silica fiber is from $70^{\circ}C$ to $340^{\circ}C$ and the maximum operation temperature of the FOTS is sufficient for usage at the secondary system in the nuclear power plant.

Development of High-Sensitivity Cantilever-Detected ESR Measurement Using a Fiber-Optic Interferometer

  • Tokuda, Yuki;Tsubokura, Daichi;Ohmichi, Eiji;Ohta, Hitoshi
    • Journal of Magnetics
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    • v.18 no.2
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    • pp.173-177
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    • 2013
  • Cantilever-detected high-frequency electron spin resonance (ESR) is a powerful method of sub-terahertz and terahertz ESR spectroscopy for a tiny magnetic sample at low temperature. In this technique, a small magnetization change associated with ESR transition is detected as deflection of a sample-mounted cantilever. So far, we have succeeded in ESR detection at 370 GHz using a commercial piezoresistive microcantilever. The spin sensitivity was estimated to ${\sim}10^{12}$ spins/gauss. In order to further increase the sensitivity, we adopt a fiber-optic-based detection system using a Fabry-Perot interferometer in place of piezoresistive system. Fabry-Perot cavity is formed between an optical-fiber end and microcantilever surface, and a change in the interference signal, corresponding to the cantilever deflection, is sensitively detected. This system is suitable for low-temperature and high-magnetic-field experiments because of its compact setup and less heat dissipation. In this study, performance of Fabry-Perot interferometer is evaluated, and its application to cantilever-detected ESR measurement is described.

Temperature Sensor Based on Fabry-Perot Interferometer Using a Fiber Optic Patch Cord (광섬유 패치코드를 이용한 Fabry-Perot 간섭계 온도센서)

  • Kim, Ju Ha;Jung, Eun Joo;Kim, Myoung Jin;Hwang, Sung Hwan;Lee, Woo Jin;Kim, Gye Won;An, Jong Bae;Choi, Eun Seo;Rho, Byung Sup
    • Journal of Sensor Science and Technology
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    • v.23 no.2
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    • pp.110-113
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    • 2014
  • In this paper, we propose and demonstrate a Fabry-Perot interferometer (FPI) optical fiber tip sensor fabricated by a blade-sawing technique using a fiber optic patch cord for high-resolution temperature measurement. The sensor head consists of a short air FP cavity near the tip of a single-mode fiber patch cord tip. The temperature which we can measure is determined through a phase variation of the interference fringes in the reflective spectrum of the sensor. The fiber optic FPI sensor in this work can monitor the environmental temperature very accurately from 40 to $120^{\circ}C$. As a result, the temperature sensitivity is obtained as $38.2pm/^{\circ}C$.

A Study on the Interferometer Configuration for Improvement of Signal-to-Noise Ratio of Optical Coherence Tomography System (OCT 시스템의 SNR 향상을 위한 간섭계 개선에 관한 연구)

  • Yang, Sung-Kuk;Park, Yang-Ha;Chang, Won-Suk;Oh, Sang-Ki
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.18 no.5
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    • pp.126-131
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    • 2004
  • As a noninvasive imaging method, optical coherence tomography system has been extensively studied because it has some advantages such as imaging of high resolution, low cost, and compact size configuration. In order to improve the SNR of OCT system, two types of interferometers were configured and then, we compared simulation with measurement of reference sample. In the OCT system is configured with Michelson interferometer, the contrast of cross-sectional image is reduced with low SNR detection which is due to loss of feedback interference signal from light source part. Also, in order to image measured data with real time, image processing program is constructed. From results of simulation, it is confirmed that improved Michelson interferometer is improved about 10[dB] with a 50 : 50 fiber coupler. And from the measurement of reference sample, about 5[dB] is improved with a 50 : 50 fiber coupler. It is confirmed that the OCT system is configured with the improved Michelson interferometer which has a good distinctive cross-sectional image due to higher contrast.

광섬유 레이저 센서

  • 김향균
    • Korean Journal of Optics and Photonics
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    • v.4 no.4
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    • pp.480-486
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    • 1993
  • We propose and demanstrate a fiber laser as a sensor, whose output is the frequency of beat signals between eigenpolarization modes of the fiber laser. For the measurement of lateral stress, proportional constant of 4.8 kHz/gram is obtained with a good linearity. For the measurements of temperature and longitudinal strain applied to the polarization maintaining fiber laser, proportional constants of 30 kHz/$^{\circ}C$ -cm, and 43 kHz/${\mu}m$, respectively, are obtained.

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