论文标题
朝向大型带宽光子相关器,用于红外杂项干涉法
Toward a large bandwidth photonic correlator for infrared heterodyne interferometry
论文作者
论文摘要
已经提出了红外杂种干涉法,作为将大量望远镜重组在中红外基准基线上的大量望远镜的实际替代方法。但是,当前有限的相关能力对这项吸引力技术的灵敏度施加了强大的限制。在本文中,我们建议通过引入红外杂化干涉仪中的光子处理来解决宽宽距离的传输和宽带信号的相关性问题。我们描述了两种望远镜的光子双面带相关器的结构,以及在原理测试床上的实验证明。我们演示了先前在双层镜模拟器上在双层带有光子相关器中生成的两个红外信号的\ textit {a后验}相关性。通过相关器获得的噪声因子$ \ text {nf} = 1.15 $的信噪比为$ 13 \%$的降解是通过相关器获得的,我们输入信号的时间相干性能是从这些测量值中检索的。我们的结果表明,光子处理可用于将杂差信号与检测带宽的可能大大增加相关联。这些发展为中红外杂项干涉量的宽带宽信号的光子处理开辟了道路,尤其是对于大量望远镜和直接成像器重组器的光子处理。
Infrared heterodyne interferometry has been proposed as a practical alternative for recombining a large number of telescopes over kilometric baselines in the mid-infrared. However, the current limited correlation capacities impose strong restrictions on the sensitivity of this appealing technique. In this paper, we propose to address the problem of transport and correlation of wide-bandwidth signals over kilometric distances by introducing photonic processing in infrared heterodyne interferometry. We describe the architecture of a photonic double-sideband correlator for two telescopes, along with the experimental demonstration of this concept on a proof-of-principle test bed. We demonstrate the \textit{a posteriori} correlation of two infrared signals previously generated on a two-telescope simulator in a double-sideband photonic correlator. A degradation of the signal-to-noise ratio of $13\%$, equivalent to a noise factor $\text{NF}=1.15$, is obtained through the correlator, and the temporal coherence properties of our input signals are retrieved from these measurements. Our results demonstrate that photonic processing can be used to correlate heterodyne signals with a potentially large increase of detection bandwidth. These developments open the way to photonic processing of wide bandwidth signals for mid-infrared heterodyne interferometry, in particular for a large number of telescopes and for direct imager recombiners.