宽带线性化光强调制器的新设计

N. Reingand, I. Shpantzer, Y. Achiam, A. Kaplan, A. Greenblatt, G. Harston, P. Cho
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引用次数: 11

摘要

微波光子学是利用光链路传输射频信号的领域,在过去十年中发展迅速。人们需要能够在两个远程位置之间实现高保真模拟传输的紧凑、坚固和廉价的设备。模拟传输具有对许多频带中的各种调制格式透明的固有优点。许多应用需要大动态范围(超过130 dB/Hz)和大(几GHz)带宽。在这种应用中,限制性能的元件是光强度调制器。基于Mach-Zehnder干涉仪(MZI)的典型强度调制器具有非线性响应,因此表现出强烈的三阶互调失真,限制了动态范围。由于设计的复杂性,许多关于MZI响应线性化的建议都没有成为现实。我们提出了一种新颖的、非常简单的强度调制器响应线性化方法,该方法基于将MZI和低q非谐振栅格-托尔诺斯干涉仪(GTI)集成在一个集成封装中。在这种设计中,可以完全消除三阶互调失真,在1hz带宽下将无杂散动态范围提高到130 dB。同时,由于GTI的低Q,可以在0-45 GHz范围内的任何地方获得超过3 GHz的带宽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel design for the broadband linearized optical intensity modulator
The field of microwave photonics in which the radio-frequency signal is transmitted using an optical link has been experiencing rapid growth in the last decade. There is a demand for compact, robust and inexpensive devices capable of achieving high fidelity analog transmission between two remote locations. Analog transmission possesses an inherent advantage of being transparent to various modulation formats in many bands. Many applications require large dynamic range (over 130 dB/Hz) and large (few GHz) bandwidth. In such applications the element limiting the performance turns out to be the optical intensity modulator. The typical intensity modulator based on the Mach-Zehnder interferometer (MZI) has a nonlinear response and thus exhibits strong third-order intermodulation distortion limiting the dynamic range. Numerous suggestions for linearization of the MZI response have not become practical due to their complexity of design. We propose a novel, exceptionally simple way of linearization of the intensity modulator response based on combining a MZI and a low-Q off-resonant Gires-Tornois interferometer (GTI) in one integrated package. In this design the third-order intermodulation distortion can be completely cancelled raising the spur-free dynamic range to 130 dB in 1 Hz bandwidth. At the same time, due to the low Q of the GTI a bandwidth in excess of 3 GHz can be attained anywhere in a 0-45 GHz range.
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