论文标题

测量碎屑盘相位功能的挑战。应用于HR \,4796

The challenge of measuring the phase function of debris disks. Application to HR\,4796

论文作者

Olofsson, J., Milli, J., Bayo, A., Henning, Th., Engler, N.

论文摘要

删节:碎片盘是研究灰尘特性的宝贵系统。因为它们在所有波长上都具有光学上的薄,所以我们可以直接进入尘埃晶粒的性质。研究它们的一种非常有前途的技术是测量其相位功能。高度倾斜的磁盘是有希望的目标,因为可以探测更广泛的散射角度。通常,通过将观测值与假设参数化相函数的合成磁盘模型进行比较,或者从磁盘的表面亮度估算它来推断该相函数。我们在这里认为,由于投影效应导致沿非平盘的主要轴的柱密度增加,后一种方法可能会偏差。我们提出了一种新的方法来说明这些色谱柱密度效应。该方法仍然取决于模型,因为仍然需要磁盘模型来估计密度变化是散射角度的函数。但是,此方法使我们能够估算相位函数的形状,而不必调用任何参数化形式。我们将我们的方法应用于HR \,4796的Sphere/Zimpol观测值,并以先前的测量突出了差异。我们的建模结果表明,在光波长下,磁盘不是垂直平坦的。我们讨论了该方法的一些警告,主要是我们的方法仍然对灰尘密度的局部局部增长视而不见,并且还不能轻易地将其应用于角度差异成像观察结果。与以前关于HR \,4796的研究类似,我们仍然无法使用给定的散射理论来调和全图,以解释相位函数的形状,这是碎片磁盘的持久问题。尽管如此,我们认为与本研究中突出的相似效果也可以偏向于总强度的相位函数的确定。

Abridged: Debris disks are valuable systems to study dust properties. Because they are optically thin at all wavelengths, we have direct access to the properties of dust grains. One very promising technique to study them is to measure their phase function. Disks that are highly inclined are promising targets as a wider range of scattering angles can be probed. The phase function is usually either inferred by comparing the observations to synthetic disk models assuming a parametrized phase function, or estimating it from the surface brightness of the disk. We argue here that the latter approach can be biased due to projection effects leading to an increase in column density along the major axis of a non flat disk. We present a novel approach to account for those column density effects. The method remains model dependent, as one still requires a disk model to estimate the density variations as a function of the scattering angle. This method allows us however to estimate the shape of the phase function without having to invoke any parametrized form. We apply our method to SPHERE/ZIMPOL observations of HR\,4796 and highlight the differences with previous measurements. Our modelling results suggest that the disk is not vertically flat at optical wavelengths. We discuss some of the caveats of the approach, mostly that our method remains blind to real local increase of the dust density, and that it cannot yet be readily applied to angular differential imaging observations. Similarly to previous studies on HR\,4796, we still cannot reconcile the full picture using a given scattering theory to explain the shape of the phase function, a long lasting problem for debris disks. Nonetheless, we argue that similar effects as the ones highlighted in this study can also bias the determination of the phase function in total intensity.

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