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基于慢光的 2 μm 可调延迟和窄带梳状滤波。

Slow-light based tunable delay and narrowband comb filtering at 2  μm.

出版信息

Opt Lett. 2019 Nov 1;44(21):5278-5281. doi: 10.1364/OL.44.005278.

Abstract

Development of coherent sources, wideband thulium-doped fiber amplifiers, and fiber components has opened up the wavelength region around 2000 nm for optical communications, sensing, and medical surgery. However, several key functionalities that are critical to enable these applications are not yet well developed and, therefore, need attention. Here, we present demonstration of two critical signal processing tasks viz: (1) tunable delay and (2) tunable narrowband filter, which are important for enabling optical communications using wavelengths around 2000 nm. We exploit stimulated Brillouin scattering (SBS) in a 100 m long SM1950 fiber to report the first demonstration of slow-light based tunable delay around 2000 nm. For a 35 ns input pulse, we tune the delay up to a maximum of 18.8 ns, which corresponds to a relative delay of ∼0.5, by varying the pump power to achieve a maximum gain of 12.6 dB. For the 1550 nm wavelength regime, it has been shown that the Brillouin slow-light typically results in a delay of 1 ns/dB, which is less than the 1.67 ns/dB obtained at 2000 nm. For the same gain, the large delay at 2 μm compared to 1.55 μm results from the narrow gain bandwidth (∼22  MHz) of the SBS process in this wavelength regime. Using the narrow gain bandwidth of SBS, we present a proof-of-concept experiment to demonstrate filtering of individual comb lines in a comb with frequency spacing <50  MHz. Demonstration of tunable narrowband filter and delay enables optical signal processing and line-by-line control of comb lines at 2 μm.

摘要

相干光源、宽带掺铥光纤放大器和光纤组件的发展开辟了 2000nm 左右的光通信、传感和医疗手术波长区域。然而,一些对于实现这些应用至关重要的关键功能尚未得到很好的开发,因此需要关注。在这里,我们演示了两个关键的信号处理任务:(1)可调延迟和(2)可调窄带滤波器,这对于在 2000nm 左右的波长上实现光通信至关重要。我们利用 100m 长的 SM1950 光纤中的受激布里渊散射(SBS),首次演示了基于慢光的可调延迟,延迟范围约为 2000nm。对于 35ns 的输入脉冲,我们通过改变泵浦功率来实现最大增益 12.6dB,将延迟调谐至最大 18.8ns,对应于相对延迟约 0.5。对于 1550nm 波长范围,已经表明布里渊慢光通常导致 1ns/dB 的延迟,这小于在 2000nm 时获得的 1.67ns/dB。对于相同的增益,与 1.55μm 相比,2μm 处的大延迟是由于在该波长范围内 SBS 过程的窄增益带宽(约 22MHz)。利用 SBS 的窄增益带宽,我们进行了一项原理验证实验,以演示在梳状频谱中频率间隔<50MHz 的单个梳状线滤波。可调窄带滤波器和延迟的演示实现了 2μm 处的光信号处理和梳状线的逐线控制。

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