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基于薄膜铌酸锂脊形波导上长周期波导光栅的可调谐窄带陷波和带通滤波器。

Tunable narrow band-rejection and band-pass filter based on long-period waveguide grating on a thin-film lithium niobate rib waveguide.

作者信息

Deng Jiayao, Yao Hao, Sun Yuzhe, Wu Jieyun, Chen Kaixin

出版信息

Opt Express. 2024 Aug 26;32(18):32495-32505. doi: 10.1364/OE.534421.

Abstract

We propose and demonstrate experimentally an electro-optic (EO) and thermo-optic (TO) tunable wavelength filter with band-rejection and band-pass dual-function. Our proposed filter is based on a long-period waveguide grating (LPWG) formed on a lithium niobate on insulator (LNOI) rib waveguide with a channel-shaped polymer cladding waveguide. The LPWG formed on the surface of the LNOI core enables efficient mode coupling between the two fundamental modes of the LNOI waveguide and the polymer cladding waveguide and hence dual-function filtering. For the z-/x-polarized input light, our fabricated best filter shows an 18.1-dB/8.2-dB band-rejection contrast and a 15.7-dB/17.4-dB band-pass contrast at 1565.26/1594.24 nm wavelength, with a relatively narrow 3-dB bandwidth of 2.5/2.3 nm, respectively. In addition, the fabricated filter also shows an EO tuning efficiency of ∼32 pm/V and a TO tuning efficiency of 0.465 nm/°C, respectively. Our proposed filter could find applications in wavelength division multiplexing, temperature sensing, and other fields of optical communication and optical information processing.

摘要

我们提出并通过实验证明了一种具有带阻和带通双功能的电光(EO)和热光(TO)可调谐波长滤波器。我们提出的滤波器基于在绝缘体上铌酸锂(LNOI)肋形波导上形成的长周期波导光栅(LPWG),该波导带有通道形聚合物包层波导。在LNOI纤芯表面形成的LPWG能够在LNOI波导和聚合物包层波导的两个基模之间实现高效的模式耦合,从而实现双功能滤波。对于z/x偏振输入光,我们制作的最佳滤波器在1565.26/1594.24 nm波长处分别显示出18.1 dB/8.2 dB的带阻对比度和15.7 dB/17.4 dB的带通对比度,相对较窄的3 dB带宽分别为2.5/2.3 nm。此外,制作的滤波器还分别显示出约32 pm/V的电光调谐效率和0.465 nm/°C的热光调谐效率。我们提出的滤波器可应用于波分复用、温度传感以及光通信和光信息处理的其他领域。

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