首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >Continuous-Wave Sub-THz Photonic Generation With Ultra-Narrow Linewidth, Ultra-High Resolution, Full Frequency Range Coverage and High Long-Term Frequency Stability
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Continuous-Wave Sub-THz Photonic Generation With Ultra-Narrow Linewidth, Ultra-High Resolution, Full Frequency Range Coverage and High Long-Term Frequency Stability

机译:具有超窄线宽,超高分辨率,全频率范围覆盖和高长期频率稳定性的连续波亚太赫兹光子产生

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摘要

We report on a photonic system for generation of high quality continuous-wave (CW) sub-THz signals. The system consists on a gain-switching-based optical frequency comb generator (GS-OFCG), a two-optical-modes selection mechanism and a n-i-pn-i-p superlattice photomixer. As mode selection mechanism, both selective tunable optical filtering using Fabry–Pérot tunable filters (FPTFs) and Optical Injection Locking (OIL) are evaluated. The performance of the reported system surpasses in orders of magnitude the performance of any commercially available optical mm-wave and sub-THz generation system in a great number of parameters. It matches and even overcomes those of the best commercially available electronic THz generation systems. The performance parameters featured by our system are: linewidth $<$10 Hz at 120 GHz, complete frequency range coverage (60–140 GHz) with a resolution in the order of 0.1 Hz at 120 GHz (${hbox{10}}^{-12}$ of generated frequency), high long term frequency stability (5 Hz deviation over one hour). Most of these values are limited by the measurement instrumentation accuracy and resolution, thus the actual values of the system could be better than the reported ones. The frequency can be extended straightforwardly up to 1 THz extending the OFCG frequency span. This system is compact, robust, reliable, offers a very high performance, especially suited for sub-THz photonic local oscillators and high resolution spectroscopy.
机译:我们报道了一种用于产生高质量连续波(CW)次太赫兹信号的光子系统。该系统由基于增益切换的光学频率梳状发生器(GS-OFC​​G),双光学模式选择机制和n-i-pn-i-p超晶格光混合器组成。作为模式选择机制,将评估使用Fabry-Pérot可调滤波器(FPTF)的选择性可调光学滤波和光学注入锁定(OIL)。报告的系统的性能在许多参数上都超过了任何市售的毫米波和次太赫兹产生系统的性能。它匹配甚至克服了最好的市售电子太赫兹生成系统。我们系统的性能参数包括:线宽 $ <$ 120 GHz时10 Hz,完整的频率范围覆盖范围(60– 140 GHz),分辨率在120 GHz时约为0.1 Hz( $ {hbox {10}} ^ {-12} $ < /公式>生成的频率),高的长期频率稳定性(一小时内5 Hz的偏差)。这些值中的大多数受测量仪器精度和分辨率的限制,因此系统的实际值可能会比报告的值更好。可以将频率直接扩展到1 THz,从而扩展OFCG频率范围。该系统紧凑,坚固,可靠,具有很高的性能,特别适合于亚太赫兹光子本振和高分辨率光谱学。

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