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Radiation response behavior of high phosphorous doped step-index multimode optical fibers under low dose gamma irradiation

机译:高剂量掺磷的阶跃多模光纤在低剂量伽马辐射下的辐射响应行为

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This paper revealed the role of various parameters on the radiation response behavior of P2O5 doped step-index multimode (SIMM) fibers having different content of P2O5 (12-6 mol%) at room temperature. Their suitability for use as a radiation sensitive fiber in fiber optic dosimeter was studied under Co-60-gamma irradiation at different dose rates 0.01-0 Gy/h. The suitable wavelength region is found to be 500600 nm where the fibers shows the maximum radiation sensitivity due to formation of phosphorous-oxygen hole centers identified from their radiation induced absorption spectra. The influence of each parameter like the doping levels Of P2O5, dose rates, doping region and energy of the radiation source on their sensitivities was examined. The radiation sensitivities recorded at 502, 540 and 560 nm depends strongly on P2O5 content of the fiber at low dose rates within 0.01-1 Gy/h. However, the fibers shows almost dose rate independent behavior at high dose rates (>1.0 Gy/h) under Co-60-gamma radiation source of energy 1.25 MeV with respect to all the three wavelengths. The fiber shows almost linear relation to the total dose up to saturation levels of 4.0 Gy at all dose rates. Their sensitivities could be explained through analyses of such type of glass as well as behavior of the radiation induced P-related defects generated in the light guiding core region. At low dose rates the fibers becomes more radiation sensitive compared to the high dose rates due to conversion of POHC centers to P-1 (phosphorous E') defect centers as observed from their induced loss curves during gamma irradiation. At low dose rates 0.1-1 Gy/h under 502 nm transmission wavelength the fibers shows an excellent linear relation with respect to Cs-137 radiation source of energy 0.662 MeV having average sensitivity of 1.0452 +/- 0.0346 dB/m/Gy and very low fading behavior at room temperature. The results suggest that P-doped SIMM fiber (40 mu m core diameter) containing 16 mol% P2O5 exhibit an excellent linear radiation response property of high sensitivity around 0.89 +/- 0.09 dB/m/Gy at 502 nm wavelength with very low recovery and little dose rate dependence within 0.5-10 Gy/h region that makes them a very promising candidate as radiation sensor for use in fiber optic personal dosimeter to detect low dose gamma radiation of 0.002 Gy for human safety purpose.
机译:本文揭示了各种参数在室温下具有不同P2O5含量(12-6 mol%)的P2O5掺杂阶跃多模(SIMM)光纤的辐射响应行为的作用。在Co-60-γ辐照下以0.01-0 Gy / h的不同剂量率研究了它们在光纤剂量计中用作辐射敏感纤维的适用性。发现合适的波长区域是500600nm,其中由于从其辐射诱导的吸收光谱中鉴定出的磷-氧空穴中心的形成,纤维显示出最大的辐射敏感性。研究了P2O5的掺杂水平,剂量率,掺杂区域和辐射源能量等各个参数对其灵敏度的影响。在502、540和560 nm处记录的辐射敏感性在很大程度上取决于在0.01-1 Gy / h内的低剂量率下纤维中P2O5的含量。然而,相对于所有三个波长,在能量为1.25 MeV的Co-60-γ辐射源下,光纤在高剂量率(> 1.0 Gy / h)下几乎显示出与剂量率无关的行为。在所有剂量率下,直至4.0 Gy的饱和水平,纤维与总剂量几乎呈线性关系。通过分析这种类型的玻璃以及在光导芯区域中产生的辐射诱发的P相关缺陷的行为,可以解释它们的敏感性。从低剂量率到高剂量率,由于POHC中心转化为P-1(磷E')缺陷中心,从γ辐照过程中引起的损耗曲线可以看出,纤维对辐射的敏感性更高。在502 nm传输波长下的低剂量率0.1-1 Gy / h下,纤维相对于Cs-137辐射源0.662 MeV表现出极好的线性关系,其平均灵敏度为1.0452 +/- 0.0346 dB / m / Gy,并且非常在室温下褪色性能低。结果表明,含16 mol%P2O5的P掺杂SIMM光纤(芯直径40μm)表现出出色的线性辐射响应特性,在502 nm波长下具有高灵敏度,大约0.89 +/- 0.09 dB / m / Gy,回收率非常低并且在0.5-10 Gy / h范围内几乎没有剂量率依赖性,这使其成为非常有前途的候选者,可作为辐射传感器用于光纤个人剂量计中,以检测0.002 Gy的低剂量伽马射线,以确保人身安全。

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