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An inverse problem of estimating the heat source in tapered optical fibers for scanning near-field optical microscopy

机译:估计用于扫描近场光学显微镜的锥形光纤中热源的反问题

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摘要

A conjugate gradient method based on inverse algorithm is applied in this study to estimate the unknown space- and time-dependent heat source in aluminum-coated tapered optical fibers for scanning near-field optical microscopy, by reading the transient temperature data at the measurement positions. No prior information is available on the functional form of the unknown heat source in the present study; thus, it is classified as the function estimation in inverse calculation. The accuracy of the inverse analysis is examined by using the simulated exact and inexact temperature measurements. Results show that an excellent estimation on the heat source and temperature distributions in the tapered optical fiber can be obtained for all the test cases considered in this study.
机译:本研究采用基于逆算法的共轭梯度法,通过读取测量位置的瞬态温度数据,估计用于扫描近场光学显微镜的铝包覆锥形光纤中未知的时空依赖的热源。 。在本研究中,没有关于未知热源功能形式的现有信息。因此,它被归类为逆计算中的函数估计。通过使用模拟的精确和不精确的温度测量来检查逆分析的准确性。结果表明,对于本研究中考虑的所有测试案例,可以对锥形光纤中的热源和温度分布进行出色的估算。

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