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Noninvasive and Real-Time Plasmon Waveguide Resonance Thermometry

机译:无创实时等离子波导共振测温仪

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In this paper, the noninvasive and real-time plasmon waveguide resonance (PWR) thermometry is reported theoretically and demonstrated experimentally. Owing to the enhanced evanescent field and thermal shield effect of its dielectric layer, a PWR thermometer permits accurate temperature sensing and has a wide dynamic range. A temperature measurement sensitivity of 9.4 × 10−3 °C is achieved and the thermo optic coefficient nonlinearity is measured in the experiment. The measurement of water cooling processes distributed in one dimension reveals that a PWR thermometer allows real-time temperature sensing and has potential to be applied for thermal gradient analysis. Apart from this, the PWR thermometer has the advantages of low cost and simple structure, since our transduction scheme can be constructed with conventional optical components and commercial coating techniques.
机译:本文对无创实时等离子体激元共振(PWR)测温进行了理论报道,并进行了实验验证。由于其介电层具有增强的瞬逝场和热屏蔽效果,PWR温度计可实现精确的温度感应并具有宽动态范围。在实验中实现了9.4×10 −3 °C的温度测量灵敏度,并测量了热光学系数非线性。对一维分布的水冷却过程的测量表明,PWR温度计可以进行实时温度感测,并且有潜力用于热梯度分析。除此之外,PWR温度计具有成本低廉和结构简单的优点,因为我们的换能方案可以使用常规的光学组件和商业涂层技术来构造。

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