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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Continuous delay tunability using a combination of three types of fiber Bragg gratings, wavelength conversion, and wavelength multicasting with a frequency comb
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Continuous delay tunability using a combination of three types of fiber Bragg gratings, wavelength conversion, and wavelength multicasting with a frequency comb

机译:使用三种类型的光纤布拉格光栅,波长转换和波长多播的组合连续延迟可调性

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摘要

We experimentally demonstrate a delay subsystem that utilizes a combination of three types of fiber-Bragg gratings (FBGs), wavelength conversion, and wavelength multicasting using a frequency comb source. While the linearly chirped FBG together with a channelized dispersion compensation one, provide the continuous delay, an array of standard FBGs utilizes the multicast copies to extend the delay in steps determined by the array geometry. Following the characterization of the group-delay dispersion performance of the FBGs, a 10 Gbaud quadrature phase-shift keying (QPSK) signal is continuously delayed by 2.2 ns and discretely delayed in 3 steps of similar to 2 ns, to provide a total gap-less delay of 8.1 ns. The delayed signal is finally recovered to its original wavelength with an optical signal-to-noise ratio (OSNR) penalty of similar to 2.3 dB. Furthermore, we show that the penalty can be reduced to 1.2 dB after equalization and report delaying a 20 Gbaud QPSK signal. The demonstrated high-quality delay performance is quite scalable. The continuous delay can be extended to tens of nanoseconds, limited only by the performance of the used components, while the discrete delay is determined by the number of multicast copies and propagation distance between the reflections in the array of FBGs.
机译:我们通过使用频率梳源使用三种类型的光纤 - 布拉格光栅(FBGS),波长转换和波长多播的组合来展示一个延迟子系统,它利用三种类型的光纤 - 布拉格光栅(FBG),波长转换和波长多播。虽然线性啁啾FBG与信道化色散补偿一起提供连续延迟,但是标准FBG阵列利用组播副本来扩展由阵列几何体确定的步骤中的延迟。在FBG的组延迟色散性能的表征之后,将10GBaud正交相移键控(QPSK)信号连续延迟2.2ns,并且在类似于2 ns的3个步骤中分离延迟,以提供总差距 - 8.1 ns的延迟较少。最终将延迟信号恢复到其原始波长,其光学信噪比(OSNR)类似于2.3 dB的惩罚。此外,在均衡之后,我们表明罚款可以减少到1.2 dB,并报告延迟20 Gbaud QPSK信号。展示的高质量延迟性能非常可扩展。连续延迟可以扩展到数十纳秒,仅通过使用的组件的性能而受到限制,而离散延迟由FBG阵列中的反射之间的多播复印和传播距离确定。

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