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首页> 外文期刊>The Astrophysical journal >REVEALING ASYMMETRIES IN THE HD 181327 DEBRIS DISK: A RECENT MASSIVE COLLISION OR INTERSTELLAR MEDIUM WARPING
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REVEALING ASYMMETRIES IN THE HD 181327 DEBRIS DISK: A RECENT MASSIVE COLLISION OR INTERSTELLAR MEDIUM WARPING

机译:揭示HD 181327磁盘中的不对称现象:最近发生的大规模碰撞或星际中等摩擦

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摘要

New multi-roll coronagraphic images of the HD 181327 debris disk obtained using the Space Telescope Imaging Spectrograph on board the Hubble Space Telescope reveal the debris ring in its entirety at high signal-to-noise ratio and unprecedented spatial resolution. We present and apply a new multi-roll image processing routine to identify and further remove quasi-static point-spread function-subtraction residuals and quantify systematic uncertainties. We also use a new iterative image deprojection technique to constrain the true disk geometry and aggressively remove any surface brightness asymmetries that can be explained without invoking dust density enhancements/deficits. The measured empirical scattering phase function for the disk is more forward scattering than previously thought and is not well-fit by a Henyey-Greenstein function. The empirical scattering phase function varies with stellocentric distance, consistent with the expected radiation pressured-induced size segregation exterior to the belt. Within the belt, the empirical scattering phase function contradicts unperturbed debris ring models, suggesting the presence of an unseen planet. The radial profile of the flux density is degenerate with a radially varying scattering phase function; therefore estimates of the ring's true width and edge slope may be highly uncertain. We detect large scale asymmetries in the disk, consistent with either the recent catastrophic disruption of a body with mass 1% the mass of Pluto, or disk warping due to strong interactions with the interstellar medium.
机译:使用哈勃太空望远镜上的太空望远镜成像光谱仪获得的HD 181327碎片盘的新的多卷日冕图像,显示了高信噪比和空前的空间分辨率下的整个碎片环。我们提出并应用了一种新的多辊图像处理例程,以识别并进一步去除准静态点扩展函数减去残差并量化系统不确定性。我们还使用了一种新的迭代图像投影技术来约束真实的磁盘几何形状,并积极消除可以解释的任何表面亮度不对称性,而无需使用粉尘密度增强/缺陷。磁盘的实测经验散射相位函数比以前认为的要更向前散射,并且不能很好地被Henyey-Greenstein函数拟合。经验散射相位函数随恒星中心距离而变化,这与带子外部预期的辐射压致尺寸偏析一致。在带内,经验散射相位函数与不受扰动的碎片环模型相矛盾,表明存在看不见的行星。通量密度的径向分布通过径向变化的散射相位函数退化。因此,对环的真实宽度和边缘斜率的估计可能非常不确定。我们检测到磁盘中存在大规模不对称现象,这与最近质量大于冥王星质量1%的物体的灾难性破坏或由于与星际介质强烈相互作用而导致的磁盘翘曲相一致。

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