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Dramatic robustness of a multiple delay dispersed interferometer to spectrograph errors: how mixing delays reduces or cancels wavelength drift

机译:多重延迟分散干涉仪对光谱仪误差的强大鲁棒性:混合延迟如何减少或消除波长漂移

摘要

We describe demonstrations of remarkable robustness to instrumental noises by using a multiple delay externally dispersed interferometer (EDI) on stellar observations at the Hale telescope. Previous observatory EDI demonstrations used a single delay. The EDI (also called “TEDI”) boosted the 2,700 resolution of the native TripleSpec NIR spectrograph (950-2450 nm) by as much as 10x to 27,000, using 7 overlapping delays up to 3 cm. We observed superb rejection of fixed pattern noises due to bad pixels, since the fringing signal responds only to changes in multiple exposures synchronous to the applied delay dithering. Remarkably, we observed a ~20x reduction of reaction in the output spectrum to PSF shifts of the native spectrograph along the dispersion direction, using our standard processing. This allowed high resolution observations under conditions of severe and irregular PSF drift otherwise not possible without the interferometer. Furthermore, we recently discovered an improved method of weighting and mixing data between pairs of delays that can theoretically further reduce the net reaction to PSF drift to zero. We demonstrate a 350x reduction in reaction to a native PSF shift using a simple simulation. This technique could similarly reduce radial velocity noise for future EDI’s that use two delays overlapped in delay space (or a single delay overlapping the native peak). Finally, we show an extremely high dynamic range EDI measurement of our ThAr lamp compared to a literature ThAr spectrum, observing weak features (~0.001x height of nearest strong line) that occur between the major lines. Because of individuality of each reference lamp, accurate knowledge of its spectrum between the (unfortunately) sparse major lines is important for precision radial velocimetry.
机译:我们通过在海尔望远镜的恒星观测中使用倍数延迟外部分散干涉仪(EDI),描述了对仪器噪声具有显着鲁棒性的演示。以前的天文台EDI演示使用单个延迟。 EDI(也称为“ TEDI”)通过使用长达3厘米的7个重叠延迟,将原始TripleSpec NIR光谱仪(950-2450 nm)的2700分辨率提高了10倍,达到27,000。由于边缘信号仅响应与所施加的延迟抖动同步的多次曝光变化,因此我们观察到了由于不良像素而对固定模式噪声的出色抑制。值得注意的是,使用我们的标准处理方法,我们观察到输出光谱中的反应相对于沿分散方向的原始光谱仪的PSF位移降低了约20倍。这允许在严重且不规则的PSF漂移条件下进行高分辨率观察,否则如果没有干涉仪将无法进行观察。此外,我们最近发现了一种在延迟对之间加权和混合数据的改进方法,该方法从理论上可以进一步将对PSF漂移的净反应降至零。我们展示了使用简单的模拟对原始PSF偏移的反应减少了350倍。对于未来的EDI,该技术可以类似地减少径向速度噪声,该EDI使用在延迟空间中重叠的两个延迟(或在自然峰上重叠的单个延迟)。最后,与文献中的ThAr光谱相比,我们展示了我们的ThAr灯的极高动态范围EDI测量值,观察到主线之间出现了弱特征(〜0.001x最近强线的高度)。由于每个参考灯的独特性,在(不幸的)稀疏主线之间准确了解其光谱对于精确的径向测速非常重要。

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