Optical Data Storage in Photosensitive Fibres

R. Campbell, R. Kashyap
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Abstract

There is considerable interest in exploiting photosensitivity in germanosilicate optical fibres for application in the areas of optical communication and sensors. Hill et al [1] first observed permanent optically-induced changes of the refractive index of optical fibres in 1978. In their experiment coherent radiation at 514.5nm, reflected from the fibre ends, generated a standing wave in the fibre which induced a periodic refractive index change along its length. This formed a high reflectivity Bragg grating in the fibre which has a peak at the wavelength of the incident beam. Since then numerous studies into the grating growth mechanism and photosensitive fibres have been carried out [2],[3]. However, the mechanism which results in the perturbation to the refractive index of the fibre core is not fully understood. The spectral region where the fibre is photosensitive has been found to range from the uv to around 500nm.
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光敏光纤中的光数据存储
利用锗硅酸盐光纤的光敏性,将其应用于光通信和传感器领域,引起了相当大的兴趣。Hill等[1]于1978年首次观测到光纤折射率的永久性光诱导变化。在他们的实验中,514.5nm的相干辐射,从光纤末端反射,在光纤中产生驻波,引起沿其长度的周期性折射率变化。这在光纤中形成了一个高反射率的布拉格光栅,在入射光束的波长处有一个峰值。此后,对光栅生长机理和光敏纤维进行了大量的研究[2],[3]。然而,引起纤芯折射率扰动的机理尚不完全清楚。纤维光敏的光谱范围从紫外线到500纳米左右。
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