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首页> 外文期刊>The Astrophysical journal >SUPPRESSION OF FIBER MODAL NOISE INDUCED RADIAL VELOCITY ERRORS FOR BRIGHT EMISSION-LINE CALIBRATION SOURCES
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SUPPRESSION OF FIBER MODAL NOISE INDUCED RADIAL VELOCITY ERRORS FOR BRIGHT EMISSION-LINE CALIBRATION SOURCES

机译:用于光发射线校准源的纤维模态噪声引起的径向速度误差的抑制

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Modal noise in optical fibers imposes limits on the signal-to-noise ratio (S/N) and velocity precision achievable with the next generation of astronomical spectrographs. This is an increasingly pressing problem for precision radial velocity spectrographs in the near-infrared (NIR) and optical that require both high stability of the observed line profiles and high S/N. Many of these spectrographs plan to use highly coherent emission-line calibration sources like laser frequency combs and Fabry-Perot etalons to achieve precision sufficient to detect terrestrial-mass planets. These high-precision calibration sources often use single-mode fibers or highly coherent sources. Coupling light from single-mode fibers to multi-mode fibers leads to only a very low number of modes being excited, thereby exacerbating the modal noise measured by the spectrograph. We present a commercial off-the-shelf solution that significantly mitigates modal noise at all optical and NIR wavelengths, and which can be applied to spectrograph calibration systems. Our solution uses an integrating sphere in conjunction with a diffuser that is moved rapidly using electrostrictive polymers, and is generally superior to most tested forms of mechanical fiber agitation. We demonstrate a high level of modal noise reduction with a narrow bandwidth 1550 nm laser. Our relatively inexpensive solution immediately enables spectrographs to take advantage of the innate precision of bright state-of-the art calibration sources by removing a major source of systematic noise.
机译:光纤中的模态噪声限制了下一代天文光谱仪可达到的信噪比(S / N)和速度精度。对于近红外(NIR)和光学中的精密径向速度光谱仪来说,这是一个日益迫切的问题,需要同时观察到的线轮廓具有高稳定性和高信噪比。这些光谱仪中的许多光谱仪计划使用高度相干的发射线校准源,例如激光频率梳和Fabry-Perot等,以达到足以检测地面质量行星的精度。这些高精度校准源通常使用单模光纤或高度相干的源。从单模光纤到多模光纤的光耦合仅导致很少数量的模被激发,从而加剧了由光谱仪测得的模态噪声。我们提出了一种现成的商用解决方案,该解决方案可以显着减轻所有光学和NIR波长下的模态噪声,并且可以应用于光谱仪校准系统。我们的解决方案使用积分球和扩散器,扩散器使用电致伸缩聚合物快速移动,通常优于大多数测试形式的机械纤维搅拌。我们展示了使用窄带宽1550 nm激光器的高模态噪声降低。我们相对便宜的解决方案可通过消除主要的系统噪声源,使光谱仪立即利用明亮的最新校准源的固有精度。

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