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DNA 固体薄膜的热光特性及其作为生物相容性光纤温度传感器的应用。

Thermo-optic characteristic of DNA thin solid film and its application as a biocompatible optical fiber temperature sensor.

作者信息

Hong Seongjin, Jung Woohyun, Nazari Tavakol, Song Sanggwon, Kim Taeoh, Quan Chai, Oh Kyunghwan

出版信息

Opt Lett. 2017 May 15;42(10):1943-1945. doi: 10.1364/OL.42.001943.

Abstract

We report unique thermo-optical characteristics of DNA-Cetyl tri-methyl ammonium (DNA-CTMA) thin solid film with a large negative thermo-optical coefficient of -3.4×10/°C in the temperature range from 20°C to 70°C without any observable thermal hysteresis. By combining this thermo-optic DNA film and fiber optic multimode interference (MMI) device, we experimentally demonstrated a highly sensitive compact temperature sensor with a large spectral shift of 0.15 nm/°C. The fiber optic MMI device was a concatenated structure with single-mode fiber (SMF)-coreless silica fiber (CSF)-single mode fiber (SMF) and the DNA-CTMA film was deposited on the CSF. The spectral shifts of the device in experiments were compared with the beam propagation method, which showed a good agreement.

摘要

我们报道了DNA-十六烷基三甲基铵(DNA-CTMA)固体薄膜独特的热光特性,在20°C至70°C的温度范围内,其具有-3.4×10⁻⁴/°C的大负热光系数,且无任何可观察到的热滞现象。通过将这种热光DNA薄膜与光纤多模干涉(MMI)器件相结合,我们通过实验证明了一种高灵敏度的紧凑型温度传感器,其具有0.15 nm/°C的大光谱位移。光纤MMI器件是一种单模光纤(SMF)-无芯石英光纤(CSF)-单模光纤(SMF)的级联结构,DNA-CTMA薄膜沉积在CSF上。实验中该器件的光谱位移与光束传播法进行了比较,结果显示吻合良好。

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