Li Mingxiao, Ling Jingwei, He Yang, Javid Usman A, Xue Shixin, Lin Qiang
Department of Electrical and Computer Engineering, University of Rochester, Rochester, NY, 14627, USA.
Institute of Optics, University of Rochester, Rochester, NY, 14627, USA.
Nat Commun. 2020 Aug 17;11(1):4123. doi: 10.1038/s41467-020-17950-7.
Modern advanced photonic integrated circuits require dense integration of high-speed electro-optic functional elements on a compact chip that consumes only moderate power. Energy efficiency, operation speed, and device dimension are thus crucial metrics underlying almost all current developments of photonic signal processing units. Recently, thin-film lithium niobate (LN) emerges as a promising platform for photonic integrated circuits. Here, we make an important step towards miniaturizing functional components on this platform, reporting high-speed LN electro-optic modulators, based upon photonic crystal nanobeam resonators. The devices exhibit a significant tuning efficiency up to 1.98 GHz V, a broad modulation bandwidth of 17.5 GHz, while with a tiny electro-optic modal volume of only 0.58 μm. The modulators enable efficient electro-optic driving of high-Q photonic cavity modes in both adiabatic and non-adiabatic regimes, and allow us to achieve electro-optic switching at 11 Gb s with a bit-switching energy as low as 22 fJ. The demonstration of energy efficient and high-speed electro-optic modulation at the wavelength scale paves a crucial foundation for realizing large-scale LN photonic integrated circuits that are of immense importance for broad applications in data communication, microwave photonics, and quantum photonics.
现代先进的光子集成电路要求在紧凑芯片上密集集成高速电光功能元件,且功耗适中。因此,能量效率、运行速度和器件尺寸是几乎所有当前光子信号处理单元发展的关键指标。最近,薄膜铌酸锂(LN)成为光子集成电路的一个有前景的平台。在此,我们朝着在该平台上实现功能组件的小型化迈出了重要一步,报道了基于光子晶体纳米光束谐振器的高速LN电光调制器。这些器件展现出高达1.98 GHz V的显著调谐效率、17.5 GHz的宽调制带宽,同时电光模态体积仅为0.58 μm³。这些调制器能够在绝热和非绝热状态下对高Q值光子腔模式进行高效电光驱动,并使我们能够以低至22 fJ的比特切换能量在11 Gb/s下实现电光开关。在波长尺度上实现高效节能和高速电光调制的演示为实现大规模LN光子集成电路奠定了关键基础,这对于数据通信、微波光子学和量子光子学等广泛应用具有极其重要的意义。