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Four-core optical fiber as a calorimetric gauge

机译:四芯光纤作为量热仪

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摘要

A four-core optical fiber is demonstrated as a calorimetric gauge for investigation of one-dimensional heat transfer measurements. Transient heat pulses from a Nd:YAG laser of 600 ms duration with a repetition rate of the order of 10 s are delivered onto the cleaved distal end face of the four-core fiber, aiming at one of the single cores only, which cause an optical path length difference between four guiding cores due to the temperature-induced change in the index of refraction and physical length of the targeted fiber core of concern. This results in a shift in the fringe pattern, which is operated in the reflection scheme. A phase shift of 0.43 +/- 0.015 rad is measured with a CMOS camera for 40 mW pulses. The thermal heat diffusion length in the selected fiber core is determined to be 2.8 mm, which contains 10.9 +/- 0.38 kJ/m(2)s heat, causing a temperature rise of 1.43 +/- 0.05 K. (C) 2016 Optical Society of America
机译:展示了一种四芯光纤作为量热计,用于研究一维传热测量。来自Nd:YAG激光器的持续时间为600 ms的瞬态热脉冲(重复频率约为10 s)被传递到四芯光纤的开裂远端端面上,仅瞄准单芯之一,这会导致由于温度引起的目标光纤纤芯的折射率和物理长度的变化,导致四个导向纤芯之间的光程长度差异。这导致条纹图案的偏移,该条纹图案以反射方案操作。用CMOS相机测量40 mW脉冲时的相移为0.43 +/- 0.015 rad。确定所选纤维芯中的热扩散长度为2.8 mm,其中包含10.9 +/- 0.38 kJ / m(2)s的热量,导致温度升高1.43 +/- 0.05 K.(C)2016光学美国学会

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