• Title/Summary/Keyword: Thermo-optic

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The Development of Optical Temperature Sensor Based on the Etched Bragg Gratings

  • Ahn, Kook-Chan;Lee, Sang-Mae
    • International Journal of Aeronautical and Space Sciences
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    • v.2 no.2
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    • pp.56-64
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    • 2001
  • An optical temperature sensor based on the etched planar waveguide Bragg grating is developed and its performance is explored using theoretical and experimental methods. The planar waveguide is designed and fabricated using optical lithography and wet chemical etching. An efficient butt coupled optical fiber is used to examine the spectral characteristics of the grating sensor, and to investigate the grating parameters. The typical bandwidth and reflectivity of the surface etched grating has been ~0.2 nm and ~7%, respectively, at a wavelength of ~1,552 nm. The temperature-induced wavelength change of the optical sensor is found to be slightly non-linear over ${\sim}200^{\circ}C$ temperature range. Theoretical models for the grating response of the sensor based on waveguide and classical laminated plate deformation theories agree with experiments to within acceptable tolerance.

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Optical Bistability in Nonlinear Etalons Filled with NOA81 Optical Adhesive (NOA81 Optical Adhesive를 중간층으로 하는 비선형 Etalon에서 나타나는 광쌍안정현상에 대한 연구)

  • Kong, Hong-Jin;Hwang, Wol-Yon;Lee, Sang-Soo
    • Proceedings of the KIEE Conference
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    • 1987.11a
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    • pp.387-391
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    • 1987
  • We have observed the optical bistabilities at $5145{\AA}$ in nonlinear etalons filled with NOA8l optical adhesive which is cured with UV light under the temperature gradient of $7^{\circ}C/mm$ on the NOA81 layer surface. The critical switch-on irradiance and switch-on time are $17\;KW/cm^2$ and $350{\mu}sec$. respectively. The switching contrast of up to 8 observed in NOA81 etalons is higher than that of ZnS or ZnSe interference filter, and the thermo-optic coefficient (dn/ndT) of NOA81 is measured to be at least $-3.8{\times}10^{-4}/^{\circ}C$ which is larger in magnitude than that of ZnS or ZnSe.

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Periodically poled stoichiometric lithium tantalate for optical parametric oscillation (주기적으로 분극반전된 stoichiometric $LiTaO_3$ 이용한 광매게발생)

  • Lee, Yu-Nan;Sunao Kurimuyn;Masaru Nakamura;Kenii Kitamura
    • Proceedings of the Optical Society of Korea Conference
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    • 2003.02a
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    • pp.228-229
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    • 2003
  • The quasi-phase matching (QPM) technique has dramatically changed the guidelines in developing nonlinear optical materials, which doesn't require birefringence and off-diagonal components for efficient wavelength conversion. Minimum requirement for QPM is the modulation of nonlinearity and ferroelectric materials with low coercive field has become fascinating in periodical poling. Stoichiometric lithium tantalate (SLT) has attractive advantages of low coercive field (∼l .5 KV/mm), high nonlinearity, high optical damage resistance and low thermo-optic coefficients, leading to a large aperture QPM devices for high power operation. (omitted)

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Using MZIs for Optical PSBT Transmissions: Requirements for Thermal Stabilization

  • Ducournau, Guillaume;Latry, Olivier;Ketata, Mohamed
    • ETRI Journal
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    • v.28 no.5
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    • pp.615-620
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    • 2006
  • In this paper, we discuss the quantification of Mach-Zehnder interferometer (MZI) thermal stabilization which is needed in optical phase shaped binary transmission (PSBT) links. Considering the thermo-optic and thermal expansion effects, we revisit the analytical expression for the thermal drift (GHz/$^{\circ}C$) of the MZI center frequency (denoted here by the 'MZI spectral drift'). An MZI is then used in an experimental transmission system using the optical PSBT format. We study the effect of spectral MZI drift by using a thermally stabilized interferometer and applying a frequency shift to the optical carrier. By using the thermal drift coefficient of the MZI, we find that to ensure low bit error rate fluctuations due to the MZI drift, the thermal stabilization of the device must have an accuracy of $0.5^{\circ}C$.

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High sensitive temperature sensor using side-polished single mode fiber to thermo-optic polymer planar waveguide couplers (측면연마된 단일모드 광섬유와 열광학폴리머 평면도파로 결합기를 이용한 고감도 온도센서)

  • 김상우;정웅규;장수원;강경목;이종훈;송재원;이승하;김광택;강신원
    • Proceedings of the Optical Society of Korea Conference
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    • 2000.08a
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    • pp.12-13
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    • 2000
  • 광섬유형 센서는 전자기 간섭에 강하고 높은 감도와 원거리측정 등의 장점이 있어 이에 대한 연구가 활발하게 진행되고 있다. 온도센서의 경우 다양한 구조의 센서 구현이 용이하고 넓은 온도범위에서의 측정이 가능하다. 하지만 이러한 광섬유형센서는 대부분 온도변화를 물리량의 변화로 감지하기 때문에 작은 온도의 감지에는 구조적인 한계를 가지는 경우가 많으며 이러한 문제점을 개선하기 위하여 많은 연구가 시도되고 있다$^{[1]}$ . 본 논문은 이러한 점을 인지한 측면연마된 광섬유와 평면도파로 결합기형 고감도 온도센서에 관한 연구이다. 본 연구에서는 온도의 감지를 열광학 평면도파로의 열광학계수에 의존하기 때문에 물질의 변화에 따라 다양한 온도감도 조절과 높은 분해능을 가지는 센서의 구현이 가능하다. (중략)

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New Compensation Method for Temperature Sensitivity of Fiber Brags Grating Using Bi-metal

  • Chung, Young-Joo;Song, Jong-Seob;Han, Won-Taek;Paek, Un-Chul
    • Journal of the Optical Society of Korea
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    • v.7 no.2
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    • pp.84-88
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    • 2003
  • A new method for temperature compensation of fiber Bragg grating (FBG) using hi-metal is proposed and experimentally demonstrated. Bi-metal bends toward the metal of low temperature expansion coefficient as the temperature increases, and this property is utilized to cancel the thermo-optic effect of the fiber. The optimum thickness of the high coefficient metal was empirically found by the trial-and-error method. The temperature sensitivities were 8.1 pm/$^{\circ}C$ and -0.018 pm/$^{\circ}C$ for the uncompensated and compensated FBGs, respectively, which indicates a reduction to a mere 0.22 % of the original sensitivity. No appreciable change in the spectral shape was observed. The packaging technique described in this paper is simple and compact, and it can be used for FBGs in WDM and DWDM communication systems that have stringent requirements on the temperature stability of the components.

Characteristics of Thermal Coefficient of Fiber Bragg Grating for Temperature Measurement (온도 측정을 위한 광섬유 브래그 격자 센서의 온도 계수 특성 평가)

  • Kim, Heon-Young;Kang, Donghoon;Lee, Jin-Hyuk;Kim, Dae-Hyun
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.37 no.8
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    • pp.999-1005
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    • 2013
  • A fiber Bragg grating sensor is considered a smart sensor that shows outstanding performance in the field of structural health monitoring (SHM). It has a powerful advantage, especially that of multiplexing, which enables several parameters to be sensed at multiple points by using a single optical fiber line. Among several parameters, the thermal expansion coefficient and thermo-optic coefficient are required to measure temperature. In previous studies, these were considered constant variables. This study shows that two parameters vary with temperature and newly proposes a temperature function for these two parameters. Specifically, these two parameters were defined as a single variable, and then, it was experimentally verified that this variable is a function of temperature. Finally, it was shown that temperature from RT to $100^{\circ}C$ was precisely measured by using the temperature function that was defined through the experiment.

Variable Optical Attenuator using Optical Coupling between a Side Polished Fiber and Refractive Index Matching Liquid (측면 연마된 광섬유와 굴절률 정합액사이의 광결합을 이용한 가변 광 감쇠기)

  • Kim, Kwang-Taek;Song, Jae-Won
    • Journal of the Korean Institute of Telematics and Electronics D
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    • v.36D no.9
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    • pp.50-55
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    • 1999
  • In this paper we proposed a variable optical attenuator using the side polished fiber coupled with a refractive index matching liquid. Small variation of refractive index of matching liquid can induce very large change of optical loss due to the coupling between the fiber mode and radiation mode. The thermo-optic effect of matching liquid was used to ontrol the optical attenuation. The side polished fiber block was fabricated using the silicon V gloove. Experimental results showed that $5^{\circ}C$ temperature variation was enough to adjust full range attenuation. The polarization dependent loss and insertion loss of the fabricated devices were 0.5dB and 0.2dB respectively.

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Thermal Characteristic Analysis of a High-Precision Centerless Grinding Machine for Machining Ferrules (페룰 가공용 초정밀 무심 연삭기의 열 특성 해석)

  • Kim S.I.;Cho J.W.
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2005.06a
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    • pp.90-95
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    • 2005
  • To perform the finish outside-diameter grinding process of ferrules which are widely used as fiber optic connectors, a high-precision centerless grinding machine is necessary. In this study, the thermal characteristics of the high-precision centerless grinding machine such as the temperature distribution, temperature rise and thermal deformation, are estimated based on the virtual prototype of the grinding machine and the heat generation rates of heat sources related to the machine operation conditions. The reliability of the predicted results is demonstrated by the temperature characteristics measured from the physical prototype. Especially, the predicted and measured results show the fact that the high-precision centerless grinding machine consisted of the hydrostatic GW and RW spindle systems, hydrostatic RW feeding mechanism, RW swivel mechanism, on-machine GW and RW dressers, and concrete-filled steel bed, has very stable thermal characteristics.

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High-sensitivity temperature sensor using the side polished single mode fiber and polymer planar waveguide coupler (측면연마된 단일모드 광섬유와 폴리머 평면도파로 결합기를 이용한 고감도 온도센서)

  • Jeong, Ung-Gyu;Kim, Sang-U;Kim, Gwang-Taek;Kim, Eung-Su;Yu, Yun-Sik;Gang, Sin-Won
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.39 no.1
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    • pp.39-46
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    • 2002
  • High-senstivity temperature sensor based on the wavelength selectivity of single mode fiber-to-planar waveguide coupler, was demonstrated. The resonant wavelength of the coupler was shifted with large rate of -3.43nm/$^{\circ}C$ owing to good thermo-optic effects of polymer planar waveguide. The device design technique to reduce the polarization dependent properties and increase the temperature sensitivity was presented.