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Modal Noise Mitigation through Fiber Agitation for Fiber-fed Radial Velocity Spectrographs

机译:纤维搅拌径向速度谱图通过纤维搅动减轻模态噪声

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Optical fiber modal noise is a limiting factor for high precision spectroscopy signal-to-noise in the near-infrared and visible. Unabated, especially when using highly coherent light sources for wavelength calibration, modal noise can induce radial velocity (RV) errors that hinder the discovery of low-mass (and potentially Earth-like) planets. Previous research in this field has found sufficient modal noise mitigation through the use of an integrating sphere, but this requires extremely bright light sources, a luxury not necessarily afforded by the next generation of high-resolution optical spectrographs. Otherwise, mechanical agitation, which "mixes" the fiber's modal patterns and allows the noise to be averaged over minutes-long exposures, provides some noise reduction but the exact mechanism behind improvement in signal-to-noise and RV drift has not been fully explored or optimized by the community. Therefore, we have filled out the parameter space of modal noise agitation techniques in order to better understand agitation's contribution to mitigating modal noise and to discover a better method for agitating fibers. We find that modal noise is best suppressed by the quasi-chaotic motion of two high-amplitude agitators oscillating with varying phase for fibers with large core diameters and low azimuthal symmetry. This work has subsequently influenced the design of a fiber agitator, to be installed with the EXtreme PREcision Spectrograph, that we estimate will reduce modal-noise-induced RV error to less than 3.2 cm s?1.
机译:光纤模态噪声是高精度光谱在近红外和可见光中信噪比的限制因素。模态噪声不会减弱,尤其是在使用高度相干的光源进行波长校准时,会引起径向速度(RV)误差,从而阻碍了低质量(和可能类似地球)行星的发现。该领域的先前研究已经发现,通过使用积分球可以充分减轻模态噪声的影响,但这需要极亮的光源,而下一代高分辨率光学光谱仪并不一定能提供这种奢华。否则,机械搅拌会“混合”光纤的模态模式,并允许在数分钟的曝光时间内对噪声进行平均,从而可以降低一定的噪声,但是尚未充分探索改善信噪比和RV漂移的确切机制。或由社区优化。因此,我们填充了模态噪声搅动技术的参数空间,以便更好地理解搅动对减轻模态噪声的贡献,并发现一种更好的搅动纤维的方法。我们发现,对于具有大纤芯直径和低方位角对称性的光纤,模态噪声最好通过两个相位变化而振荡的高振幅搅拌器的准混沌运动来抑制。这项工作随后影响了纤维搅拌器的设计,该纤维搅拌器与EXtreme PREcision Spectrograph一起安装,我们估计它将使模态噪声引起的RV误差降低到小于3.2 cm s?1。

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