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氮化硅波导中的偏振选择性超宽带波长转换

Polarization selective ultra-broadband wavelength conversion in silicon nitride waveguides.

作者信息

Ayan Arman, Mazeas Florent, Liu Junqiu, Kippenberg Tobias J, Brès Camille-Sophie

出版信息

Opt Express. 2022 Jan 31;30(3):4342-4350. doi: 10.1364/OE.446357.

DOI:10.1364/OE.446357
PMID:35209672
Abstract

We experimentally demonstrate broadband degenerate continuous-wave four-wave mixing in long silicon nitride (SiN) waveguides for operation both in the telecommunication L-band and the thulium band near 2 µm by leveraging polarization dependence of the waveguide dispersion. Broadband conversion is typically demonstrated in short milimeter long waveguides as the bandwidth is linked to the interaction length. This makes it challenging to simultaneously push bandwidth and efficiency, imposing stringent constraints on dispersion engineering. In this work, we show conversion bandwidths larger than 150 nm in the L-band when pumping in the transverse magnetic (TM) mode and larger than 120 nm at 2 µm when using transverse electric excitation, despite the use of 0.5 m long waveguides. In addition, we also show how extreme polarization selectivity can be leveraged in a single waveguide to enable switchable distant phase-matching based on higher-order dispersion. Relying on this approach, we demonstrate the selective conversion of light from the telecom band to the O-band for TM polarization or to the mid-infrared light up to 2.5 µm in TE. Our experiments are in excellent agreement with simulations, showing the high potential of the platform for broadband and distant conversion beyond the telecom band.

摘要

我们通过利用波导色散的偏振依赖性,在长氮化硅(SiN)波导中进行了实验演示,实现了宽带简并连续波四波混频,该波导可在电信L波段和近2μm的铥波段工作。宽带转换通常在短毫米长的波导中得到演示,因为带宽与相互作用长度相关。这使得同时提高带宽和效率具有挑战性,对色散工程施加了严格的限制。在这项工作中,我们表明,尽管使用的是0.5米长的波导,但当以横向磁(TM)模式泵浦时,L波段的转换带宽大于150纳米,当使用横向电激发时,在2μm处的转换带宽大于120纳米。此外,我们还展示了如何在单个波导中利用极端的偏振选择性,基于高阶色散实现可切换的远场相位匹配。依靠这种方法,我们演示了对于TM偏振,光从电信波段到O波段的选择性转换,或者对于TE偏振,光到高达2.5μm的中红外光的选择性转换。我们的实验与模拟结果非常吻合,显示了该平台在电信波段之外进行宽带和远场转换的巨大潜力。

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