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Seeing-Induced Errors in Solar Doppler Velocity Measurements

机译:太阳多普勒速度测量中的视觉诱发误差

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Imaging systems based on a narrow-band tunable filter are used to obtain Doppler velocity maps of solar features. These velocity maps are created by taking the difference between the blue- and red-wing intensity images of a chosen spectral line. This method has the inherent assumption that these two images are obtained under identical conditions. With the dynamical nature of the solar features as well as the Earth’s atmosphere, systematic errors can be introduced in such measurements. In this paper, a quantitative estimate of the errors introduced due to variable seeing conditions for ground-based observations is simulated and compared with real observational data for identifying their reliability. It is shown, under such conditions, that there is a strong cross-talk from the total intensity to the velocity estimates. These spurious velocities are larger in magnitude for the umbral regions compared to the penumbra or quiet-Sun regions surrounding the sunspots. The variable seeing can induce spurious velocities up to about 1 km s−1. It is also shown that adaptive optics, in general, helps in minimising this effect.
机译:基于窄带可调滤波器的成像系统用于获得太阳特征的多普勒速度图。这些速度图是通过获取所选光谱线的蓝翼和红翼强度图像之间的差异来创建的。该方法固有的假设是,这两个图像是在相同条件下获得的。由于太阳要素以及地球大气层的动态特性,在此类测量中可能会引入系统误差。在本文中,对基于地面观测的可变观测条件引起的误差的定量估计进行了模拟,并将其与真实观测数据进行比较以识别其可靠性。结果表明,在这种条件下,从总强度到速度估计值之间存在很强的串扰。与围绕黑子的半影或安静的太阳区域相比,本影区域的这些伪速度更大。可变的视线可以诱发高达1 km s -1 的杂散速度。还显示出自适应光学器件通常有助于使这种影响最小化。

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