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Controlling the properties of microstructured plastic optical fiber Bragg gratings using acousto-optic excitation

机译:利用声光激发控制微结构塑料光纤布拉格光栅的性能

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摘要

A fine control of the mPOF Bragg grating spectrum properties, such as maximum reflected power and 3dB bandwidth, through acousto-optic modulation (AOM) using flexural regime is presented. A numerical comparison of the strain field along mPOFBG - AOM and the similar structure with SMFBG-AOM was presented, showing that the strain field amplitude is higher along the mPOFBG due to its smaller mechanical stiffness. The obtained results can be used in the development of fine-tuned optical filters using low voltage sources and low frequency regimes, to obtain tunable optical filters and to control the shape of the spectrum. Studies of the behavior in different gratings (such as phase shifted and long period gratings) for photonic applications, such as tunable notch filters or tunable cavities, are in progress. It can potentially be applied on tunable optical filters for POF transmission.
机译:提出了使用挠曲机制通过声光调制(AOM)精确控制mPOF布拉格光栅光谱特性的方法,例如最大反射功率和3dB带宽。进行了沿mPOFBG-AOM的应变场和与SMFBG-AOM相似结构的数值比较,结果表明,沿mPOFBG的应变场振幅由于其较小的机械刚度而较高。获得的结果可用于开发使用低压源和低频模式的微调滤光器,以获得可调滤光器并控制光谱的形状。正在进行针对光子应用的不同光栅(例如相移和长周期光栅)(例如可调陷波滤波器或可调腔)中的行为的研究。它可以潜在地应用于可调谐光学滤波器以进行POF传输。

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