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Tunable nonlinearly-bend-chirped fiber Bragg grating for third-order dispersion compensation

机译:可调谐非线性弯曲啁啾光纤布拉格光栅,用于三阶分散补偿

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Summary form only given. It has been shown that chirped fiber Bragg gratings (FBGs) can be used for the compensation of not only the group velocity dispersion (GVD) but also the 3/sup rd/-order dispersion (TOD). However, conventional chirped FBGs usually suffer from group-delay ripple (GDR) problems, typically 10 ps, caused by stitching errors, step-chirp errors and fabrication imperfections. Due to the relatively low group delay value of the TOD component compared to that of the GVD, a low GDR is highly desirable for high-quality compensation. It is also highly attractive if a device can offer tunability in the TOD component, which is not possible in conventional devices. In this paper, we propose a novel nonlinearly-bend-chirped FBG, which is tunable and has a low GDR, suitable for the compensation of TOD. We have demonstrated transmission of 10 GHz, 2.6 ps pulses over 98 km of dispersion-shifted fiber (DSF) with full TOD compensation using this device.
机译:摘要表格仅给出。已经表明,啁啾光纤布拉格光栅(FBGS)可用于补偿不仅是群体速度分散(GVD),而且用于3 / SUP RD / -ORENDER分散(TOD)。然而,传统的啁啾FBG通常遭受组延迟纹波(GDR)问题,通常是由缝合误差,步进啁啾误差和制造缺陷引起的<10 ps。由于TOD组分的相对低的组延迟值与GVD相比,低GDR非常希望高质量补偿。如果设备可以在TOD组件中提供可调性,它也是高度吸引力的,在传统设备中是不可能的。在本文中,我们提出了一种新颖的非线性弯曲啁啾FBG,可调谐并具有低GDR,适用于TOD的补偿。我们已经证明了10 GHz,2.6 PS脉冲超过98公里的偏移光纤(DSF)的脉冲,使用该设备具有全TOD补偿。

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