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Noise Studies of Externally Dispersed Interferometry for Doppler Velocimetry

机译:多普勒速率外部分散干涉测量的噪声研究

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Externally Dispersed Interferometry (EDI) is the series combination of a fixed-delay field-widened Michelson interferometer with a dispersive spectrograph. This combination boosts the spectrograph performance for both Doppler velocimetry and high resolution spectroscopy. The interferometer creates a periodic comb that multiplies against the input spectrum to create moire fringes, which are recorded in combination with the regular spectrum. Both regular and high-frequency spectral components can be recovered from the data- the moire component carries additional information that increases the signal to noise for velocimetry and spectroscopy. Here we present simulations and theoretical studies of the photon limited Doppler velocity noise in an EDI. We used a model spectrum of a 1600K temperature star. For several rotational blurring velocities 0, 7.5, 15 and 25 km/s we calculated the dimensionless Doppler quality index (Q) versus wavenumber v. This is the normalized RMS of the derivative of the spectrum and is proporotional to the photon-limited Doppler signal to noise ratio.
机译:外部干涉分散(EDI)是一个固定延迟场加宽的迈克尔逊干涉仪与色散光谱仪的串联组合。这种组合提升两个多普勒测速仪和高分辨率光谱仪光谱仪的性能。干涉仪产生的周期性梳,对输入频谱相乘以产生莫尔条纹,其被记录在结合常规的光谱。常规和高频频谱分量可以从DATA-波纹成分被回收携带附加信息增加信噪比为测速和光谱。在这里,我们本模拟和光子的理论研究在EDI限于多普勒速度噪声。我们使用1600K温度明星的典范谱。数旋转模糊速度0,7.5,15和25公里/秒我们计算相对于波数诉量纲多普勒质量指数(Q),这是微分光谱的的标准化RMS和是proporotional到光子受限的多普勒信号噪声比。

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