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基于石墨烯的超紧凑型集成微光子可调延迟线设计。

Design of an ultra-compact graphene-based integrated microphotonic tunable delay line.

作者信息

Brunetti Giuseppe, Conteduca Donato, Dell'Olio Francesco, Ciminelli Caterina, Armenise Mario N

出版信息

Opt Express. 2018 Feb 19;26(4):4593-4604. doi: 10.1364/OE.26.004593.

Abstract

The design of a continuously tunable optical delay line based on a compact graphene-based silicon Bragg grating is reported. High performance, in terms of electro-optical switching time (tswitch < 8 ns), delay range (Δτ = 200 ps), and figure of merit FOM = Δτ/A = 1.54x10 ps/mm, has been achieved with an ultra-compact device footprint (A ~1.3 x 10 mm), so improving the state-of-the-art of integrated optical delay lines. A continuous and complete tunability of the delay time can be achieved with a very low delay loss ( = 0.03 dB/ps) and a weak power consumption ( = 0.05 mW/ps). A flat bandwidth B = 1.19 GHz has been calculated by exploiting the slow-light effect in the device. This performance makes the proposed optical delay line suitable for several applications in Microwave Photonics (MWP), such as beamsteering/beamforming, for which large delay range, flat and wide bandwidth and small volume are required.

摘要

报道了一种基于紧凑的石墨烯基硅布拉格光栅的连续可调谐光学延迟线的设计。该器件具有超紧凑的占地面积(A ~1.3×10⁻⁶ mm²),在电光开关时间(tswitch < 8 ns)、延迟范围(Δτ = 200 ps)和品质因数FOM = Δτ/A = 1.54×10⁻² ps/mm方面实现了高性能,从而改进了集成光学延迟线的现有技术水平。通过极低的延迟损耗(α = 0.03 dB/ps)和微弱的功耗(P = 0.05 mW/ps),可以实现延迟时间的连续且完全可调谐。利用该器件中的慢光效应计算出了平坦带宽B = 1.19 GHz。这种性能使得所提出的光学延迟线适用于微波光子学(MWP)中的多种应用,如波束转向/波束形成,这些应用需要大延迟范围、平坦且宽带宽以及小体积。

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