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Dual-function photonic integrated circuit for frequency octo-tupling or single-side-band modulation

机译:用于频率八进制或单边带调制的双功能光子集成电路

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摘要

A dual-function photonic integrated circuit for microwave photonic applications is proposed. The circuit consists of four linear electro-optic phase modulators connected optically in parallel within a generalized Mach-Zehnder interferometer architecture. The photonic circuit is arranged to have two separate output ports. A first port provides frequency up-conversion of a microwave signal from the electrical to the optical domain; equivalently single-side-band modulation. A second port provides tunable millimeter wave carriers by frequency octo-tupling of an appropriate amplitude RF carrier. The circuit exploits the intrinsic relative phases between the ports of multi-mode interference couplers to provide substantially all the static optical phases needed. The operation of the proposed dual-function photonic integrated circuit is verified by computer simulations. The performance of the frequency octo-tupling and up-conversion functions is analyzed in terms of the electrical signal to harmonic distortion ratio and the optical single side band to unwanted harmonics ratio, respectively. (C) 2015 Optical Society of America
机译:提出了一种用于微波光子应用的双功能光子集成电路。该电路由四个线性电光相位调制器组成,这些线性电光相位调制器在广义Mach-Zehnder干涉仪架构内以光学方式并联连接。光子电路被布置为具有两个单独的输出端口。第一端口提供微波信号从电域到光域的频率上变频;等效的单边带调制。第二个端口通过对适当幅度的RF载波进行频率十进线连接来提供可调毫米波载波。该电路利用多模干涉耦合器端口之间的固有相对相位,以提供所需的基本上所有静态光学相位。通过计算机仿真验证了所提出的双功能光子集成电路的操作。分别根据电信号对谐波的失真比和光学单边带对有害的谐波比,分析了频率叠加和上变频功能的性能。 (C)2015年美国眼镜学会

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