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溶胶-凝胶法制备的离子掺杂铜微结构光纤:一种潜在的选择性紫外辐射剂量计。

Sol-gel derived ionic copper-doped microstructured optical fiber: a potential selective ultraviolet radiation dosimeter.

作者信息

El Hamzaoui Hicham, Ouerdane Youcef, Bigot Laurent, Bouwmans Géraud, Capoen Bruno, Boukenter Aziz, Girard Sylvain, Bouazaoui Mohamed

机构信息

Laboratoire PhLAM/IRCICA, CNRS-Université Lille 1, F-59655 Villeneuve d'Ascq Cedex, France.

出版信息

Opt Express. 2012 Dec 31;20(28):29751-60. doi: 10.1364/OE.20.029751.

Abstract

We report the fabrication and characterization of a photonic crystal fiber (PCF) having a sol-gel core doped with ionic copper. Optical measurements demonstrate that the ionic copper is preserved in the silica glass all along the preparation steps up to fiber drawing. The photoluminescence results clearly show that such an ionic copper-doped fiber constitutes a potential candidate for UV-C (200-280 nm) radiation dosimetry. Indeed, the Cu⁺-related visible photoluminescence of the fiber shows a linear response to 244 nm light excitation measured for an irradiation power up to 2.7 mW at least on the Cu-doped PCF core. Moreover, this response was found to be fully reversible within the measurement accuracy of this study ( ± 1%), underlying the remarkable stability of copper in the Cu⁺ oxidation state within the pure silica core prepared by a sol-gel route. This reversibility offers possibilities for the achievement of reusable real-time optical fiber UV-C dosimeters.

摘要

我们报道了一种掺杂离子铜的溶胶-凝胶芯光子晶体光纤(PCF)的制备及表征。光学测量表明,在直至拉丝的整个制备步骤中,离子铜一直保留在石英玻璃中。光致发光结果清楚地表明,这种离子铜掺杂光纤是用于UV-C(200 - 280 nm)辐射剂量测定的潜在候选材料。实际上,该光纤与Cu⁺相关的可见发光对244 nm光激发显示出线性响应,至少在掺杂铜的PCF芯上,对于高达2.7 mW的辐照功率进行测量时是如此。此外,在本研究的测量精度(±1%)范围内,发现这种响应是完全可逆的,这表明通过溶胶-凝胶法制备的纯石英芯中处于Cu⁺氧化态的铜具有显著的稳定性。这种可逆性为实现可重复使用的实时光纤UV-C剂量计提供了可能性。

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