论文标题

22 Myr Old Planet au mic b的自旋角和大气逃逸的限制

Limits on the Spin-Orbit Angle and Atmospheric Escape for the 22 Myr-old Planet AU Mic b

论文作者

Hirano, Teruyuki, Krishnamurthy, Vigneshwaran, Gaidos, Eric, Flewelling, Heather, Mann, Andrew W., Narita, Norio, Plavchan, Peter, Kotani, Takayuki, Tamura, Motohide, Harakawa, Hiroki, Hodapp, Klaus, Ishizuka, Masato, Jacobson, Shane, Konishi, Mihoko, Kudo, Tomoyuki, Kurokawa, Takashi, Kuzuhara, Masayuki, Nishikawa, Jun, Omiya, Masashi, Serizawa, Takuma, Ueda, Akitoshi, Vievard, Sébastien

论文摘要

我们在其海王星大小的行星的转运期间获得了前序列星AU显微镜的光谱,以研究其轨道和大气。我们在Subaru望远镜上使用了高分散的近红外光谱仪IRD来检测地球上的多普勒“阴影”,并限制了预计的恒星斜率。观察到的行星多普勒阴影的建模表明系统的自旋轨道对齐($λ= -4.7 _ { - 6.4}^{+6.8} $度),但是需要进行其他观察以确认这一发现。我们同时使用在Keck-II上使用NIRSPEC获得的IRD数据和光谱来在1083 nm的亚稳态三胞胎线中寻找吸收。使用此限制和Parker风模型,我们将从大气的逃逸率限制为$ <0.15-0.45 \,M _ {\ oplus} $ Gyr $^{ - 1} $,可与XUV能量限制的逃生计算和水力动力学模型所预测的速率相当,但需要严格的地球测试。

We obtained spectra of the pre-main sequence star AU Microscopii during a transit of its Neptune-sized planet to investigate its orbit and atmosphere. We used the high-dispersion near-infrared spectrograph IRD on the Subaru telescope to detect the Doppler "shadow" from the planet and constrain the projected stellar obliquity. Modeling of the observed planetary Doppler shadow suggests a spin-orbit alignment of the system ($λ=-4.7_{-6.4}^{+6.8}$ degrees), but additional observations are needed to confirm this finding. We use both the IRD data and spectra obtained with NIRSPEC on Keck-II to search for absorption in the 1083 nm line of metastable triplet He I by the planet's atmosphere and place an upper limit for the equivalent width of 3.7 mÅat 99 $\%$ confidence. With this limit and a Parker wind model we constrain the escape rate from the atmosphere to $<0.15-0.45\, M_{\oplus}$ Gyr$^{-1}$, comparable to the rates predicted by an XUV energy-limited escape calculation and hydrodynamic models, but refinement of the planet mass is needed for rigorous tests.

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