论文标题

双子星球成像器的HR 4796a的多型偏光成像

Multiband Polarimetric Imaging of HR 4796A with the Gemini Planet Imager

论文作者

Arriaga, Pauline, Fitzgerald, Michael P., Duchêne, Gaspard, Kalas, Paul, Millar-Blanchaer, Maxwell A., Perrin, Marshall D., Chen, Christine H., Mazoyer, Johan, Ammons, Mark, Bailey, Vanessa P., Barman, Trafis S., Bulger, Joanna, Chilcote, Jeffrey K., Cotten, Tara, De Rosa, Robert J., Doyon, Rene, Esposito, Thomas M., Follette, Katherine B., Gerard, Benjamin L., Goodsell, Stephen, Graham, James R., Greenbaum, Alexandra Z., Hibon, Pascale, Hom, Justin, Hung, Li-Wei, Ingraham, Patrick, Konopacky, Quinn M., Macintosh, Bruce A., Maire, Jérôme, Marchis, Franck, Marley, Mark S., Marois, Christian, Metchev, Stanimir, Nielsen, Eric L., Oppenheimer, Rebecca, Palmer, David W., Patience, Jenny, Poyneer, Lisa A., Pueyo, Laurent, Rajan, Abhijith, Rameau, Julien, Rantakyrö, Fredrik T., Ruffio, Jean-Baptiste, Savransky, Dmitry, Schneider, Adam C., Sivaramakrishnan, Anand, Song, Inseok, Soummer, Remi, Thomas, Sandrine, Wang, Jason J., Ward-Duong, Kimberly, Wolff, Schuyler G.

论文摘要

HR4796A由于其高分数发光度和有利的倾向提供了良好的历史,并具有悠久的历史悠久的杂物磁盘,其既可以很好地融合和解决观察结果。我们介绍了以双子星球成像仪(GPI)极化模式(GPI)的极化模式采用的已解决碎片磁盘HR4796A的新的J-和K1波段图像。偏振强度具有强烈的散射亮度分布,并且在磁盘的另一侧未发现。在所有散射角度都检测到总强度,并且还表现出强烈的正向散射峰。我们使用前向建模的几何磁盘来提取这些数据的几何参数,极化分数和总强度散射相函数以及GPI先前获取的H波段数据。我们发现,随着波长的增加,极化相函数变得越来越正向散射。我们适合MIE和空心球的分布,将晶粒模型(DHS)模型与提取的功能相吻合。我们发现,虽然可以使用DHS模型来描述为总强度生成令人满意的模型,而不是使用MIE模型。我们发现,任意组成的DHS或MIE晶粒的单一晶粒群体可以同时再现极化分数和总强度散射相函数,这表明需要更复杂的晶粒模型。

HR4796A hosts a well-studied debris disk with a long history due to its high fractional luminosity and favorable inclination lending itself well to both unresolved and resolved observations. We present new J- and K1-band images of the resolved debris disk HR4796A taken in the polarimetric mode of the Gemini Planet Imager (GPI). The polarized intensity features a strongly forward scattered brightness distribution and is undetected at the far side of the disk. The total intensity is detected at all scattering angles and also exhibits a strong forward scattering peak. We use a forward modelled geometric disk in order to extract geometric parameters, polarized fraction and total intensity scattering phase functions for these data as well as H-band data previously taken by GPI. We find the polarized phase function becomes increasingly more forward scattering as wavelength increases. We fit Mie and distribution of hollow spheres grain (DHS) models to the extracted functions. We find that while it is possible to describe generate a satisfactory model for the total intensity using a DHS model, but not with a Mie model. We find that no single grain population of DHS or Mie grains of arbitrary composition can simultaneously reproduce the polarized fraction and total intensity scattering phase functions, indicating the need for more sophisticated grain models.

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