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处于超高Q/V状态的紧凑型铌酸锂微环谐振器。

Compact lithium niobate microring resonators in the ultrahigh Q/V regime.

作者信息

Gao Yan, Lei Fuchuan, Girardi Marcello, Ye Zhichao, Van Laer Raphaël, Torres-Company Victor, Schröder Jochen

出版信息

Opt Lett. 2023 Aug 1;48(15):3949-3952. doi: 10.1364/OL.496336.

Abstract

Lithium niobate (LN) is a promising material for future complex photonic-electronic circuits, with wide applications in such fields as communications, sensing, quantum optics, and computation. LN took a great stride toward compact photonic integrated circuits (PICs) with the development of partially etched LN on insulator (LNOI) waveguides. However, integration density is still limited for future highly compact PICs, owing to the partial etching nature of their waveguides. Here, we demonstrate a fully etched LN PIC platform, which, for the first time to our knowledge, simultaneously achieves ultralow propagation loss and compact circuit size. The tightly confined fully etched LN waveguides with smooth sidewalls allow us to bring the bending radius down to 20 μm (corresponding to 1 THz free spectral range). We have achieved compact high Q microring resonators with Q/V of 8.7 × 10 μm, almost one order of magnitude larger than previous demonstrations. The statistical mean propagation losses of our LN waveguides is 8.5 dB/m (corresponding to a mean Q factor of 4.9 × 10), even with a small bending radius of 40 μm. Our compact and ultralow-loss LN platform shows great potential in future miniaturized multifunctional integration systems. As complementary evidence to show the utility of our platform, we demonstrate soliton microcombs with an ultrahigh repetition rate of 500 GHz in LN.

摘要

铌酸锂(LN)是一种很有前途的材料,可用于未来的复杂光子 - 电子电路,在通信、传感、量子光学和计算等领域有广泛应用。随着绝缘体上部分蚀刻铌酸锂(LNOI)波导的发展,铌酸锂在紧凑型光子集成电路(PIC)方面迈出了巨大的一步。然而,由于其波导的部分蚀刻特性,对于未来高度紧凑的PIC,其集成密度仍然有限。在此,我们展示了一种全蚀刻铌酸锂PIC平台,据我们所知,该平台首次同时实现了超低传播损耗和紧凑的电路尺寸。具有光滑侧壁的紧密受限全蚀刻铌酸锂波导使我们能够将弯曲半径降低到20μm(对应于1THz的自由光谱范围)。我们已经实现了紧凑的高Q微环谐振器,其Q/V为8.7×μm,比之前的演示结果大近一个数量级。即使弯曲半径小至40μm,我们的铌酸锂波导的统计平均传播损耗为8.5dB/m(对应于平均品质因数4.9×)。我们紧凑且超低损耗的铌酸锂平台在未来的小型化多功能集成系统中显示出巨大潜力。作为证明我们平台实用性的补充证据,我们在铌酸锂中展示了重复率高达500GHz的孤子微梳。

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