论文标题
旋转双重扰动器缓解纤维模态噪音
Fiber modal noise mitigation by a rotating double scrambler
论文作者
论文摘要
纤维模态噪声是高分辨率光谱的性能限制因子,无论是在实现高信噪比还是在靶向高精度径向径向速度测量时,都使用多模式纤维喂养的高分辨率光谱仪。传统上,模态噪声会通过搅动或“摇动”纤维来降低。这样,将纤维中的光传播在许多不同的模式下重新分布。但是,如果纤维仅具有有限数量的模式,例如在近红外波长或自适应式辅助系统中,此方法效率非常低。需要的强烈搅动会强调纤维,并可能导致局灶性降解,或更糟糕的是损坏纤维。作为另一种方法,我们建议使用经典的光学双重扰动器,这是一种已经在许多高精度径向速度光谱仪中实现的设备,以通过在每个曝光期间旋转拼车者的第一个光纤端来减轻模态噪声的效果。由于乱扰的第二纤维的旋转照明模式,激发的模式会连续变化。这导致在纤维出口处的模态模式的平均值非常有效,并强烈降低了模态噪声。在此贡献中,我们提出了旋转双重扰动器的原型设计和初步实验室结果。
Fiber modal noise is a performance limiting factor in high-resolution spectroscopy, both with respect to achieving high signal-to-noise ratios or when targeting high-precision radial velocity measurements, with multi-mode fiber-fed high-resolution spectrographs. Traditionally, modal noise is reduced by agitating or "shaking" the fiber. This way, the light propagating in the fiber is redistributed over many different modes. However, in case of fibers with only a limited number of modes, e.g. at near-infrared wavelengths or in adaptive-optics assisted systems, this method becomes very inefficient. The strong agitation that would be needed stresses the fiber and could lead to focal ratio degradation, or worse, to damaging the fiber. As an alternative approach, we propose to make use of a classic optical double scrambler, a device that is already implemented in many high-precision radial-velocity spectrographs, to mitigate the effect of modal noise by rotating the scrambler's first fiber end during each exposure. Because of the rotating illumination pattern of the scrambler's second fiber, the modes that are excited vary continuously. This leads to very efficient averaging of the modal pattern at the fiber exit and to a strong reduction of modal noise. In this contribution, we present a prototype design and preliminary laboratory results of the rotating double scrambler.