Morana Adriana, Campanella Cosimo, Vidalot Jeoffray, De Michele Vincenzo, Marin Emmanuel, Reghioua Imène, Boukenter Aziz, Ouerdane Youcef, Paillet Philippe, Girard Sylvain
UJM, CNRS, IOGS, Laboratoire Hubert Curien, University Lyon, UMR 5516, 18 rue Prof. B. Lauras, F-42000 Saint-Etienne, France.
CEA, DAM, DIF, F-91297 Arpajon, France.
Sensors (Basel). 2020 Dec 17;20(24):7254. doi: 10.3390/s20247254.
We report here the response of a commercial ultra-low loss (ULL) single-mode (SM) pure silica core (PSC) fiber, the Vascade EX1000 fiber from Corning, associated with 0.16 dB/km losses at 1.55 µm to 40 keV X-rays at room temperature. Today, among all fiber types, the PSC or F-doped ones have been demonstrated to be the most tolerant to the radiation induced attenuation (RIA) phenomenon and are usually used to design radiation-hardened data links or fiber-based point or distributed sensors. The here investigated ULL-PSC showed, instead, surprisingly high RIA levels of ~3000 dB/km at 1310 nm and ~2000 dB/km at 1550 nm at a limited dose of 2 kGy(SiO), exceeding the RIA measured in the P-doped SM fibers used for dosimetry for doses of ~500 Gy. Moreover, its RIA increased as a function of the dose with a saturation tendency at larger doses and quickly recovered after irradiation. Our study on the silica structure suggests that the very specific manufacturing process of the ULL-PSC fibers applied to reduce their intrinsic attenuation makes them highly vulnerable to radiations even at low doses. From the application point of view, this fiber cannot be used for data transfer or sensing in harsh environments, except as a very efficient radiation detector or beam monitor.
我们在此报告一种商用超低损耗(ULL)单模(SM)纯硅芯(PSC)光纤,即康宁公司的Vascade EX1000光纤,在室温下对1.55 µm波长处0.16 dB/km损耗的响应以及对40 keV X射线的响应。如今,在所有光纤类型中,PSC或掺氟光纤已被证明对辐射诱导衰减(RIA)现象具有最高耐受性,通常用于设计抗辐射数据链路或基于光纤的点式或分布式传感器。相反,此处研究的ULL-PSC在1310 nm处显示出令人惊讶的高达约3000 dB/km的高RIA水平,在1550 nm处为约2000 dB/km,在2 kGy(SiO)的有限剂量下,超过了用于剂量约为500 Gy的剂量测定的掺磷单模光纤中测得的RIA。此外,其RIA随剂量增加而增加,在较大剂量时有饱和趋势,并且在辐照后迅速恢复。我们对二氧化硅结构的研究表明,为降低其固有衰减而采用的ULL-PSC光纤的非常特殊的制造工艺使其即使在低剂量下也极易受到辐射影响。从应用角度来看,这种光纤除了作为非常高效的辐射探测器或束流监测器外,不能用于恶劣环境中的数据传输或传感。