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Radiation-induced nonlinear optical response of quartz fibers

机译:辐射引起的石英纤维非线性光学响应

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摘要

The intensity of radiation-induced luminescence and transient optical losses in KU-1 (Russia) and K-3 (Japan) quartz glass optical tibers irradiated in a fast pulsed fission reactor (a pulse duration of 80 mu s and a neutron flux up to 7 x 10(16) cm(-2) s(-2)) has been measured in the visible range. The intensity of the fast luminescence component nonlinearly depends on the neutron flux. The luminescence intensity and the transient optical losses depend on the probe light intensity. Suppression of radiation-induced luminescence is observed at wavelengths that are longer or shorter than the probe light wavelength. Light probing leads to an increase in transient optical losses and a more rapid recovery of transparency. A model of two photon fluxes is proposed to analyze the relationship of the effects of suppression of radiation-induced luminescence and the increase in optical losses upon light probing. The effect of suppression of radiation-induced luminescence can be used to control the optical properties of fibers in radiation fields.
机译:在快速脉冲裂变反应堆中辐照的KU-1(俄罗斯)和K-3(日本)石英玻璃光纤中的辐射诱导的发光强度和瞬态光学损耗(脉冲持续时间为80μs,中子通量可达在可见范围内已测量到7 x 10(16)cm(-2)s(-2))。快速发光分量的强度非线性地取决于中子通量。发光强度和瞬态光学损耗取决于探测器的光强度。在比探针光波长长或短的波长处观察到辐射诱导的发光的抑制。光探测导致瞬态光学损耗的增加和透明度的更快恢复。提出了两个光子通量的模型,以分析抑制辐射诱导的发光与光探测时光损耗增加之间的关系。抑制辐射诱导的发光的效果可用于控制辐射场中纤维的光学特性。

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