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Quasi-phase-matched Electro-Optic Modulators for High-Speed Signal Processing

机译:用于高速信号处理的准相位匹配电光调制器

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This paper reports on the design, fabrication and testing of quasi-phase-matched (QPM) lithium niobate electro-optic modulators optimized for the 40-60 GHz frequency range. The device used a single-drive, coplanar-waveguide (cpw) electrode structure that provided a good balance between impedance and RF loss, and a DC VπL product of approximately 10 Vcm. Ferroelectric domain engineering enabled push-pull operation with a single drive, while achieving low chirp. A custom developed pulsed poling process was used to fabricate periodic domain QPM structures in lithium niobate. QPM periods were in the range of 3 mm to 4.5 mm, depending on the design frequency. The pulse method enabled precise domain definition with a minimum of overpoling. Low-loss diffused optical waveguides were fabricated by an annealed proton exchange (APE) process. By operating in both co-propagating and counter-propagating modes, the QPM devices can be used to implement dual band RF bandpass filters simultaneously covering both 10-20 GHz and 40-60 GHz frequency bands. Arrays of QPM device structures demonstrated in this work form the basis for a reconfigurable RF photonic filter. The RF photonic QPM technology enables efficient concurrent antenna remoting and filtering functionality.
机译:本文报告了针对40-60 GHz频率范围优化的准相位匹配(QPM)铌酸锂电光调制器的设计,制造和测试。该设备使用单驱动共面波导(cpw)电极结构,该结构在阻抗和RF损耗之间提供了良好的平衡,并且DCVπL乘积约为10 Vcm。铁电领域的工程实现了单个驱动器的推挽操作,同时实现了低chi声。使用定制开发的脉冲极化工艺来制造铌酸锂中的周期性畴QPM结构。 QPM周期在3毫米至4.5毫米的范围内,具体取决于设计频率。脉冲方法可实现精确的域定义,且交叠最少。低损耗扩散光波导是通过退火质子交换(APE)工艺制造的。通过同时工作在双向传播和反向传播模式,QPM器件可用于实现同时覆盖10-20 GHz和40-60 GHz频带的双频带RF带通滤波器。这项工作中演示的QPM设备结构阵列构成了可重构RF光子滤波器的基础。射频光子QPM技术可实现高效的并发天线远程处理和滤波功能。

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